---
OA_place: repository
OA_type: green
_id: '21602'
abstract:
- lang: eng
  text: We develop a scalable fabrication method for nanophotonic scintillators embedded
    with self-assembled nanophotonic structures. We demonstrate a 2.6-fold scintillation
    enhancement in a conventional scintillator over 4×4cm, showing the potential of
    our technique for X-ray imaging.
article_number: FTu3G.1
article_processing_charge: No
arxiv: 1
author:
- first_name: Louis
  full_name: Martin-Monier, Louis
  last_name: Martin-Monier
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Simo
  full_name: Pajovic, Simo
  last_name: Pajovic
- first_name: Juejun
  full_name: Hu, Juejun
  last_name: Hu
- first_name: Marin
  full_name: Soljačić, Marin
  last_name: Soljačić
citation:
  ama: 'Martin-Monier L, Roques-Carmes C, Pajovic S, Hu J, Soljačić M. Large-scale
    self-assembled nanophotonic scintillators for X-ray imaging. In: <i>Conference
    on Lasers and Electro-Optics</i>. Optica Publishing Group; 2024. doi:<a href="https://doi.org/10.1364/cleo_fs.2024.ftu3g.1">10.1364/cleo_fs.2024.ftu3g.1</a>'
  apa: 'Martin-Monier, L., Roques-Carmes, C., Pajovic, S., Hu, J., &#38; Soljačić,
    M. (2024). Large-scale self-assembled nanophotonic scintillators for X-ray imaging.
    In <i>Conference on Lasers and Electro-Optics</i>. Charlotte, NC, United States:
    Optica Publishing Group. <a href="https://doi.org/10.1364/cleo_fs.2024.ftu3g.1">https://doi.org/10.1364/cleo_fs.2024.ftu3g.1</a>'
  chicago: Martin-Monier, Louis, Charles Roques-Carmes, Simo Pajovic, Juejun Hu, and
    Marin Soljačić. “Large-Scale Self-Assembled Nanophotonic Scintillators for X-Ray
    Imaging.” In <i>Conference on Lasers and Electro-Optics</i>. Optica Publishing
    Group, 2024. <a href="https://doi.org/10.1364/cleo_fs.2024.ftu3g.1">https://doi.org/10.1364/cleo_fs.2024.ftu3g.1</a>.
  ieee: L. Martin-Monier, C. Roques-Carmes, S. Pajovic, J. Hu, and M. Soljačić, “Large-scale
    self-assembled nanophotonic scintillators for X-ray imaging,” in <i>Conference
    on Lasers and Electro-Optics</i>, Charlotte, NC, United States, 2024.
  ista: 'Martin-Monier L, Roques-Carmes C, Pajovic S, Hu J, Soljačić M. 2024. Large-scale
    self-assembled nanophotonic scintillators for X-ray imaging. Conference on Lasers
    and Electro-Optics. CLEO: Fundamental Science, FTu3G.1.'
  mla: Martin-Monier, Louis, et al. “Large-Scale Self-Assembled Nanophotonic Scintillators
    for X-Ray Imaging.” <i>Conference on Lasers and Electro-Optics</i>, FTu3G.1, Optica
    Publishing Group, 2024, doi:<a href="https://doi.org/10.1364/cleo_fs.2024.ftu3g.1">10.1364/cleo_fs.2024.ftu3g.1</a>.
  short: L. Martin-Monier, C. Roques-Carmes, S. Pajovic, J. Hu, M. Soljačić, in:,
    Conference on Lasers and Electro-Optics, Optica Publishing Group, 2024.
conference:
  end_date: 2024-05-10
  location: Charlotte, NC, United States
  name: 'CLEO: Fundamental Science'
  start_date: 2024-05-05
date_created: 2026-03-30T12:22:48Z
date_published: 2024-06-01T00:00:00Z
date_updated: 2026-05-05T06:27:06Z
day: '01'
doi: 10.1364/cleo_fs.2024.ftu3g.1
extern: '1'
external_id:
  arxiv:
  - '2410.07141'
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.48550/arXiv.2410.07141
month: '06'
oa: 1
oa_version: Preprint
publication: Conference on Lasers and Electro-Optics
publication_identifier:
  eisbn:
  - '9781957171395'
publication_status: published
publisher: Optica Publishing Group
quality_controlled: '1'
scopus_import: '1'
status: public
title: Large-scale self-assembled nanophotonic scintillators for X-ray imaging
type: conference
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2024'
...
---
OA_type: closed access
_id: '21603'
abstract:
- lang: eng
  text: We show how ponderomotive guiding of free electrons inside hollow optical
    fibers enables strong electron-photon coupling, together with exceptionally high
    single photon nonlinearities.
article_number: FW3K.3
article_processing_charge: No
author:
- first_name: Aviv
  full_name: Karnieli, Aviv
  last_name: Karnieli
- first_name: Nicholas
  full_name: Rivera, Nicholas
  last_name: Rivera
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Shanhui
  full_name: Fan, Shanhui
  last_name: Fan
citation:
  ama: 'Karnieli A, Rivera N, Roques-Carmes C, Fan S. Free-electron ponderomotive
    guiding for strong coupling and single-photon nonlinearity. In: <i>Conference
    on Lasers and Electro-Optics</i>. Optica Publishing Group; 2024. doi:<a href="https://doi.org/10.1364/cleo_fs.2024.fw3k.3">10.1364/cleo_fs.2024.fw3k.3</a>'
  apa: 'Karnieli, A., Rivera, N., Roques-Carmes, C., &#38; Fan, S. (2024). Free-electron
    ponderomotive guiding for strong coupling and single-photon nonlinearity. In <i>Conference
    on Lasers and Electro-Optics</i>. Charlotte, NC, United States: Optica Publishing
    Group. <a href="https://doi.org/10.1364/cleo_fs.2024.fw3k.3">https://doi.org/10.1364/cleo_fs.2024.fw3k.3</a>'
  chicago: Karnieli, Aviv, Nicholas Rivera, Charles Roques-Carmes, and Shanhui Fan.
    “Free-Electron Ponderomotive Guiding for Strong Coupling and Single-Photon Nonlinearity.”
    In <i>Conference on Lasers and Electro-Optics</i>. Optica Publishing Group, 2024.
    <a href="https://doi.org/10.1364/cleo_fs.2024.fw3k.3">https://doi.org/10.1364/cleo_fs.2024.fw3k.3</a>.
  ieee: A. Karnieli, N. Rivera, C. Roques-Carmes, and S. Fan, “Free-electron ponderomotive
    guiding for strong coupling and single-photon nonlinearity,” in <i>Conference
    on Lasers and Electro-Optics</i>, Charlotte, NC, United States, 2024.
  ista: 'Karnieli A, Rivera N, Roques-Carmes C, Fan S. 2024. Free-electron ponderomotive
    guiding for strong coupling and single-photon nonlinearity. Conference on Lasers
    and Electro-Optics. CLEO: Conference on Lasers and Electro-Optics, FW3K.3.'
  mla: Karnieli, Aviv, et al. “Free-Electron Ponderomotive Guiding for Strong Coupling
    and Single-Photon Nonlinearity.” <i>Conference on Lasers and Electro-Optics</i>,
    FW3K.3, Optica Publishing Group, 2024, doi:<a href="https://doi.org/10.1364/cleo_fs.2024.fw3k.3">10.1364/cleo_fs.2024.fw3k.3</a>.
  short: A. Karnieli, N. Rivera, C. Roques-Carmes, S. Fan, in:, Conference on Lasers
    and Electro-Optics, Optica Publishing Group, 2024.
conference:
  end_date: 2024-05-10
  location: Charlotte, NC, United States
  name: 'CLEO: Conference on Lasers and Electro-Optics'
  start_date: 2024-05-05
date_created: 2026-03-30T12:22:48Z
date_published: 2024-06-01T00:00:00Z
date_updated: 2026-05-05T06:29:12Z
day: '01'
doi: 10.1364/cleo_fs.2024.fw3k.3
extern: '1'
language:
- iso: eng
month: '06'
oa_version: None
publication: Conference on Lasers and Electro-Optics
publication_identifier:
  eisbn:
  - '9781957171395'
publication_status: published
publisher: Optica Publishing Group
quality_controlled: '1'
scopus_import: '1'
status: public
title: Free-electron ponderomotive guiding for strong coupling and single-photon nonlinearity
type: conference
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2024'
...
---
OA_type: closed access
_id: '21604'
abstract:
- lang: eng
  text: We develop a framework modeling nanoscale their light yield quantitatively
    and comparing with new fabricated multilayer polymer-scintillators. This combined
    theory-experiment approach unveils the prospects of controlling secondary-electrons
    for future enhanced scintillators.
article_number: FW3P.4
article_processing_charge: No
author:
- first_name: Avner
  full_name: Shultzman, Avner
  last_name: Shultzman
- first_name: Orr
  full_name: Beer, Orr
  last_name: Beer
- first_name: Rotem
  full_name: Strassberg, Rotem
  last_name: Strassberg
- first_name: Georgy
  full_name: Dosovitskiy, Georgy
  last_name: Dosovitskiy
- first_name: Roman
  full_name: Schütz, Roman
  last_name: Schütz
- first_name: Noam
  full_name: Veber, Noam
  last_name: Veber
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Yehonadav
  full_name: Bekenstein, Yehonadav
  last_name: Bekenstein
- first_name: Ido
  full_name: Kaminer, Ido
  last_name: Kaminer
citation:
  ama: 'Shultzman A, Beer O, Strassberg R, et al. Theory and experiment of nanoscale
    heterostructure scintillators. In: <i>Conference on Lasers and Electro-Optics</i>.
    Optica Publishing Group; 2024. doi:<a href="https://doi.org/10.1364/cleo_fs.2024.fw3p.4">10.1364/cleo_fs.2024.fw3p.4</a>'
  apa: 'Shultzman, A., Beer, O., Strassberg, R., Dosovitskiy, G., Schütz, R., Veber,
    N., … Kaminer, I. (2024). Theory and experiment of nanoscale heterostructure scintillators.
    In <i>Conference on Lasers and Electro-Optics</i>. Charlotte, NC, United States:
    Optica Publishing Group. <a href="https://doi.org/10.1364/cleo_fs.2024.fw3p.4">https://doi.org/10.1364/cleo_fs.2024.fw3p.4</a>'
  chicago: Shultzman, Avner, Orr Beer, Rotem Strassberg, Georgy Dosovitskiy, Roman
    Schütz, Noam Veber, Charles Roques-Carmes, Yehonadav Bekenstein, and Ido Kaminer.
    “Theory and Experiment of Nanoscale Heterostructure Scintillators.” In <i>Conference
    on Lasers and Electro-Optics</i>. Optica Publishing Group, 2024. <a href="https://doi.org/10.1364/cleo_fs.2024.fw3p.4">https://doi.org/10.1364/cleo_fs.2024.fw3p.4</a>.
  ieee: A. Shultzman <i>et al.</i>, “Theory and experiment of nanoscale heterostructure
    scintillators,” in <i>Conference on Lasers and Electro-Optics</i>, Charlotte,
    NC, United States, 2024.
  ista: 'Shultzman A, Beer O, Strassberg R, Dosovitskiy G, Schütz R, Veber N, Roques-Carmes
    C, Bekenstein Y, Kaminer I. 2024. Theory and experiment of nanoscale heterostructure
    scintillators. Conference on Lasers and Electro-Optics. CLEO: Conference on Lasers
    and Electro-Optics, FW3P.4.'
  mla: Shultzman, Avner, et al. “Theory and Experiment of Nanoscale Heterostructure
    Scintillators.” <i>Conference on Lasers and Electro-Optics</i>, FW3P.4, Optica
    Publishing Group, 2024, doi:<a href="https://doi.org/10.1364/cleo_fs.2024.fw3p.4">10.1364/cleo_fs.2024.fw3p.4</a>.
  short: A. Shultzman, O. Beer, R. Strassberg, G. Dosovitskiy, R. Schütz, N. Veber,
    C. Roques-Carmes, Y. Bekenstein, I. Kaminer, in:, Conference on Lasers and Electro-Optics,
    Optica Publishing Group, 2024.
conference:
  end_date: 1014-05-10
  location: Charlotte, NC, United States
  name: 'CLEO: Conference on Lasers and Electro-Optics'
  start_date: 2021-05-05
date_created: 2026-03-30T12:22:48Z
date_published: 2024-06-01T00:00:00Z
date_updated: 2026-05-05T06:30:35Z
day: '01'
doi: 10.1364/cleo_fs.2024.fw3p.4
extern: '1'
language:
- iso: eng
month: '06'
oa_version: None
publication: Conference on Lasers and Electro-Optics
publication_identifier:
  eisbn:
  - 978-195717139-5
publication_status: published
publisher: Optica Publishing Group
quality_controlled: '1'
scopus_import: '1'
status: public
title: Theory and experiment of nanoscale heterostructure scintillators
type: conference
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2024'
...
---
OA_place: repository
OA_type: green
_id: '21605'
abstract:
- lang: eng
  text: We propose an experimentally viable photonic approach to solve arbitrary probabilistic
    computing problems. Our proposition relies on a network of coupled optical parametric
    oscillators that are controlled with a bias field.
article_number: FW3Q.6
article_processing_charge: No
arxiv: 1
author:
- first_name: Michael
  full_name: Horodynski, Michael
  last_name: Horodynski
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Yannick
  full_name: Salamin, Yannick
  last_name: Salamin
- first_name: Seou
  full_name: Choi, Seou
  last_name: Choi
- first_name: Jamison
  full_name: Sloan, Jamison
  last_name: Sloan
- first_name: Di
  full_name: Luo, Di
  last_name: Luo
- first_name: Marin
  full_name: Soljačić, Marin
  last_name: Soljačić
citation:
  ama: 'Horodynski M, Roques-Carmes C, Salamin Y, et al. Stochastic logic in biased
    coupled photonic probabilistic bits. In: <i>Conference on Lasers and Electro-Optics</i>.
    Optica Publishing Group; 2024. doi:<a href="https://doi.org/10.1364/cleo_fs.2024.fw3q.6">10.1364/cleo_fs.2024.fw3q.6</a>'
  apa: 'Horodynski, M., Roques-Carmes, C., Salamin, Y., Choi, S., Sloan, J., Luo,
    D., &#38; Soljačić, M. (2024). Stochastic logic in biased coupled photonic probabilistic
    bits. In <i>Conference on Lasers and Electro-Optics</i>. Charlotte, CA, United
    States: Optica Publishing Group. <a href="https://doi.org/10.1364/cleo_fs.2024.fw3q.6">https://doi.org/10.1364/cleo_fs.2024.fw3q.6</a>'
  chicago: Horodynski, Michael, Charles Roques-Carmes, Yannick Salamin, Seou Choi,
    Jamison Sloan, Di Luo, and Marin Soljačić. “Stochastic Logic in Biased Coupled
    Photonic Probabilistic Bits.” In <i>Conference on Lasers and Electro-Optics</i>.
    Optica Publishing Group, 2024. <a href="https://doi.org/10.1364/cleo_fs.2024.fw3q.6">https://doi.org/10.1364/cleo_fs.2024.fw3q.6</a>.
  ieee: M. Horodynski <i>et al.</i>, “Stochastic logic in biased coupled photonic
    probabilistic bits,” in <i>Conference on Lasers and Electro-Optics</i>, Charlotte,
    CA, United States, 2024.
  ista: 'Horodynski M, Roques-Carmes C, Salamin Y, Choi S, Sloan J, Luo D, Soljačić
    M. 2024. Stochastic logic in biased coupled photonic probabilistic bits. Conference
    on Lasers and Electro-Optics. CLEO: Fundamental Science, FW3Q.6.'
  mla: Horodynski, Michael, et al. “Stochastic Logic in Biased Coupled Photonic Probabilistic
    Bits.” <i>Conference on Lasers and Electro-Optics</i>, FW3Q.6, Optica Publishing
    Group, 2024, doi:<a href="https://doi.org/10.1364/cleo_fs.2024.fw3q.6">10.1364/cleo_fs.2024.fw3q.6</a>.
  short: M. Horodynski, C. Roques-Carmes, Y. Salamin, S. Choi, J. Sloan, D. Luo, M.
    Soljačić, in:, Conference on Lasers and Electro-Optics, Optica Publishing Group,
    2024.
conference:
  end_date: 2024-05-10
  location: Charlotte, CA, United States
  name: 'CLEO: Fundamental Science'
  start_date: 2024-05-05
date_created: 2026-03-30T12:22:48Z
date_published: 2024-06-01T00:00:00Z
date_updated: 2026-05-04T12:44:29Z
day: '01'
doi: 10.1364/cleo_fs.2024.fw3q.6
extern: '1'
external_id:
  arxiv:
  - '2406.04000'
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.48550/arXiv.2406.04000
month: '06'
oa: 1
oa_version: Preprint
publication: Conference on Lasers and Electro-Optics
publication_identifier:
  eisbn:
  - '9781957171395'
publication_status: published
publisher: Optica Publishing Group
quality_controlled: '1'
scopus_import: '1'
status: public
title: Stochastic logic in biased coupled photonic probabilistic bits
type: conference
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2024'
...
---
OA_type: closed access
_id: '21632'
abstract:
- lang: eng
  text: We present a three-component multilayer scintillator that can achieve greater
    x-ray energy resolution than conventional single or dual-component systems, from
    10 to 100 keV. Our approach relies on spectral multiplexing of different x-ray
    energy bins.
article_number: SF3B.4
article_processing_charge: No
author:
- first_name: Seokhwan
  full_name: Min, Seokhwan
  last_name: Min
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Seou
  full_name: Choi, Seou
  last_name: Choi
- first_name: Simo
  full_name: Pajovic, Simo
  last_name: Pajovic
- first_name: Sachin
  full_name: Vaidya, Sachin
  last_name: Vaidya
- first_name: Marin
  full_name: Soljačić, Marin
  last_name: Soljačić
citation:
  ama: 'Min S, Roques-Carmes C, Choi S, Pajovic S, Vaidya S, Soljačić M. Multilayer
    scintillators for enhanced energy resolution in X-ray imaging. In: <i>Conference
    on Lasers and Electro-Optics</i>. Optica Publishing Group; 2024. doi:<a href="https://doi.org/10.1364/cleo_si.2024.sf3b.4">10.1364/cleo_si.2024.sf3b.4</a>'
  apa: 'Min, S., Roques-Carmes, C., Choi, S., Pajovic, S., Vaidya, S., &#38; Soljačić,
    M. (2024). Multilayer scintillators for enhanced energy resolution in X-ray imaging.
    In <i>Conference on Lasers and Electro-Optics</i>. Charlotte, CA, United States:
    Optica Publishing Group. <a href="https://doi.org/10.1364/cleo_si.2024.sf3b.4">https://doi.org/10.1364/cleo_si.2024.sf3b.4</a>'
  chicago: Min, Seokhwan, Charles Roques-Carmes, Seou Choi, Simo Pajovic, Sachin Vaidya,
    and Marin Soljačić. “Multilayer Scintillators for Enhanced Energy Resolution in
    X-Ray Imaging.” In <i>Conference on Lasers and Electro-Optics</i>. Optica Publishing
    Group, 2024. <a href="https://doi.org/10.1364/cleo_si.2024.sf3b.4">https://doi.org/10.1364/cleo_si.2024.sf3b.4</a>.
  ieee: S. Min, C. Roques-Carmes, S. Choi, S. Pajovic, S. Vaidya, and M. Soljačić,
    “Multilayer scintillators for enhanced energy resolution in X-ray imaging,” in
    <i>Conference on Lasers and Electro-Optics</i>, Charlotte, CA, United States,
    2024.
  ista: 'Min S, Roques-Carmes C, Choi S, Pajovic S, Vaidya S, Soljačić M. 2024. Multilayer
    scintillators for enhanced energy resolution in X-ray imaging. Conference on Lasers
    and Electro-Optics. CLEO: Science and Innovations, SF3B.4.'
  mla: Min, Seokhwan, et al. “Multilayer Scintillators for Enhanced Energy Resolution
    in X-Ray Imaging.” <i>Conference on Lasers and Electro-Optics</i>, SF3B.4, Optica
    Publishing Group, 2024, doi:<a href="https://doi.org/10.1364/cleo_si.2024.sf3b.4">10.1364/cleo_si.2024.sf3b.4</a>.
  short: S. Min, C. Roques-Carmes, S. Choi, S. Pajovic, S. Vaidya, M. Soljačić, in:,
    Conference on Lasers and Electro-Optics, Optica Publishing Group, 2024.
conference:
  end_date: 2024-05-10
  location: Charlotte, CA, United States
  name: 'CLEO: Science and Innovations'
  start_date: 2024-05-05
date_created: 2026-03-30T12:22:48Z
date_published: 2024-06-01T00:00:00Z
date_updated: 2026-05-05T10:42:12Z
day: '01'
doi: 10.1364/cleo_si.2024.sf3b.4
extern: '1'
language:
- iso: eng
month: '06'
oa_version: None
publication: Conference on Lasers and Electro-Optics
publication_identifier:
  eisbn:
  - '9781957171395'
publication_status: published
publisher: Optica Publishing Group
quality_controlled: '1'
scopus_import: '1'
status: public
title: Multilayer scintillators for enhanced energy resolution in X-ray imaging
type: conference
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2024'
...
---
OA_type: closed access
_id: '21633'
abstract:
- lang: eng
  text: We present a photonic probabilistic computing platform with a measurement-feedback
    scheme in a biased optical parametric oscillator. Probabilistic inference and
    generation of MNIST handwritten-digits are experimentally demonstrated.
article_number: SF3J.5
article_processing_charge: No
author:
- first_name: Seou
  full_name: Choi, Seou
  last_name: Choi
- first_name: Yannick
  full_name: Salamin, Yannick
  last_name: Salamin
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Rumen
  full_name: Dangovski, Rumen
  last_name: Dangovski
- first_name: Di
  full_name: Luo, Di
  last_name: Luo
- first_name: Zhuo
  full_name: Chen, Zhuo
  last_name: Chen
- first_name: Michael
  full_name: Horodynski, Michael
  last_name: Horodynski
- first_name: Jamison
  full_name: Sloan, Jamison
  last_name: Sloan
- first_name: Marin
  full_name: Soljačić, Marin
  last_name: Soljačić
citation:
  ama: 'Choi S, Salamin Y, Roques-Carmes C, et al. Photonic probabilistic computing
    leveraging quantum vacuum noise. In: <i>Conference on Lasers and Electro-Optics</i>.
    Optica Publishing Group; 2024. doi:<a href="https://doi.org/10.1364/cleo_si.2024.sf3j.5">10.1364/cleo_si.2024.sf3j.5</a>'
  apa: 'Choi, S., Salamin, Y., Roques-Carmes, C., Dangovski, R., Luo, D., Chen, Z.,
    … Soljačić, M. (2024). Photonic probabilistic computing leveraging quantum vacuum
    noise. In <i>Conference on Lasers and Electro-Optics</i>. Charlotte, NC, United
    States: Optica Publishing Group. <a href="https://doi.org/10.1364/cleo_si.2024.sf3j.5">https://doi.org/10.1364/cleo_si.2024.sf3j.5</a>'
  chicago: Choi, Seou, Yannick Salamin, Charles Roques-Carmes, Rumen Dangovski, Di
    Luo, Zhuo Chen, Michael Horodynski, Jamison Sloan, and Marin Soljačić. “Photonic
    Probabilistic Computing Leveraging Quantum Vacuum Noise.” In <i>Conference on
    Lasers and Electro-Optics</i>. Optica Publishing Group, 2024. <a href="https://doi.org/10.1364/cleo_si.2024.sf3j.5">https://doi.org/10.1364/cleo_si.2024.sf3j.5</a>.
  ieee: S. Choi <i>et al.</i>, “Photonic probabilistic computing leveraging quantum
    vacuum noise,” in <i>Conference on Lasers and Electro-Optics</i>, Charlotte, NC,
    United States, 2024.
  ista: 'Choi S, Salamin Y, Roques-Carmes C, Dangovski R, Luo D, Chen Z, Horodynski
    M, Sloan J, Soljačić M. 2024. Photonic probabilistic computing leveraging quantum
    vacuum noise. Conference on Lasers and Electro-Optics. CLEO: Conference on Lasers
    and Electro-Optics, SF3J.5.'
  mla: Choi, Seou, et al. “Photonic Probabilistic Computing Leveraging Quantum Vacuum
    Noise.” <i>Conference on Lasers and Electro-Optics</i>, SF3J.5, Optica Publishing
    Group, 2024, doi:<a href="https://doi.org/10.1364/cleo_si.2024.sf3j.5">10.1364/cleo_si.2024.sf3j.5</a>.
  short: S. Choi, Y. Salamin, C. Roques-Carmes, R. Dangovski, D. Luo, Z. Chen, M.
    Horodynski, J. Sloan, M. Soljačić, in:, Conference on Lasers and Electro-Optics,
    Optica Publishing Group, 2024.
conference:
  end_date: 2024-05-10
  location: Charlotte, NC, United States
  name: 'CLEO: Conference on Lasers and Electro-Optics'
  start_date: 2024-05-05
date_created: 2026-03-30T12:22:48Z
date_published: 2024-06-01T00:00:00Z
date_updated: 2026-05-05T06:41:30Z
day: '01'
doi: 10.1364/cleo_si.2024.sf3j.5
extern: '1'
language:
- iso: eng
month: '06'
oa_version: None
publication: Conference on Lasers and Electro-Optics
publication_identifier:
  eisbn:
  - '9781957171395'
publication_status: published
publisher: Optica Publishing Group
quality_controlled: '1'
scopus_import: '1'
status: public
title: Photonic probabilistic computing leveraging quantum vacuum noise
type: conference
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2024'
...
---
OA_place: repository
OA_type: green
_id: '21634'
abstract:
- lang: eng
  text: We show that self-configuring optical networks can analyze partially incoherent
    light. We consider the case of N spatial input channels and present a power-optimization
    method to measure their coherency matrix.
article_number: STh4Q.5
article_processing_charge: No
arxiv: 1
author:
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Shanhui
  full_name: Fan, Shanhui
  last_name: Fan
- first_name: David A. B.
  full_name: Miller, David A. B.
  last_name: Miller
citation:
  ama: 'Roques-Carmes C, Fan S, Miller DAB. Measuring and processing partially coherent
    light with self-configuring optics. In: <i>Conference on Lasers and Electro-Optics</i>.
    Optica Publishing Group; 2024. doi:<a href="https://doi.org/10.1364/cleo_si.2024.sth4q.5">10.1364/cleo_si.2024.sth4q.5</a>'
  apa: 'Roques-Carmes, C., Fan, S., &#38; Miller, D. A. B. (2024). Measuring and processing
    partially coherent light with self-configuring optics. In <i>Conference on Lasers
    and Electro-Optics</i>. Charlotte, CA, United States: Optica Publishing Group.
    <a href="https://doi.org/10.1364/cleo_si.2024.sth4q.5">https://doi.org/10.1364/cleo_si.2024.sth4q.5</a>'
  chicago: Roques-Carmes, Charles, Shanhui Fan, and David A. B. Miller. “Measuring
    and Processing Partially Coherent Light with Self-Configuring Optics.” In <i>Conference
    on Lasers and Electro-Optics</i>. Optica Publishing Group, 2024. <a href="https://doi.org/10.1364/cleo_si.2024.sth4q.5">https://doi.org/10.1364/cleo_si.2024.sth4q.5</a>.
  ieee: C. Roques-Carmes, S. Fan, and D. A. B. Miller, “Measuring and processing partially
    coherent light with self-configuring optics,” in <i>Conference on Lasers and Electro-Optics</i>,
    Charlotte, CA, United States, 2024.
  ista: 'Roques-Carmes C, Fan S, Miller DAB. 2024. Measuring and processing partially
    coherent light with self-configuring optics. Conference on Lasers and Electro-Optics.
    CLEO: Science and Innovations, STh4Q.5.'
  mla: Roques-Carmes, Charles, et al. “Measuring and Processing Partially Coherent
    Light with Self-Configuring Optics.” <i>Conference on Lasers and Electro-Optics</i>,
    STh4Q.5, Optica Publishing Group, 2024, doi:<a href="https://doi.org/10.1364/cleo_si.2024.sth4q.5">10.1364/cleo_si.2024.sth4q.5</a>.
  short: C. Roques-Carmes, S. Fan, D.A.B. Miller, in:, Conference on Lasers and Electro-Optics,
    Optica Publishing Group, 2024.
conference:
  end_date: 2024-05-10
  location: Charlotte, CA, United States
  name: 'CLEO: Science and Innovations'
  start_date: 2024-05-05
date_created: 2026-03-30T12:22:48Z
date_published: 2024-06-01T00:00:00Z
date_updated: 2026-05-05T10:45:38Z
day: '01'
doi: 10.1364/cleo_si.2024.sth4q.5
extern: '1'
external_id:
  arxiv:
  - '2402.00704'
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.48550/arXiv.2402.00704
month: '06'
oa: 1
oa_version: Preprint
publication: Conference on Lasers and Electro-Optics
publication_identifier:
  eisbn:
  - '9781957171395'
publication_status: published
publisher: Optica Publishing Group
quality_controlled: '1'
related_material:
  record:
  - id: '21535'
    relation: later_version
    status: public
scopus_import: '1'
status: public
title: Measuring and processing partially coherent light with self-configuring optics
type: conference
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2024'
...
---
OA_type: closed access
_id: '21636'
abstract:
- lang: eng
  text: We show that emitter arrays coupled to nonlinear parametric-amplifier waveguides
    support a unique, coherent inter-atomic interaction. This allows for unitary adiabatic
    evolution and coherent generation of decoherence-free excited states in waveguide
    quantum electrodynamics.
article_number: FW1C.2
article_processing_charge: No
author:
- first_name: Aviv
  full_name: Karnieli, Aviv
  last_name: Karnieli
- first_name: Offek
  full_name: Tziperman, Offek
  last_name: Tziperman
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Shanhui
  full_name: Fan, Shanhui
  last_name: Fan
citation:
  ama: 'Karnieli A, Tziperman O, Roques-Carmes C, Fan S. Coherent generation of decoherence-free
    states in nonlinear waveguide quantum electrodynamics. In: <i>Frontiers in Optics
    + Laser Science 2024 </i>. Optica Publishing Group; 2024. doi:<a href="https://doi.org/10.1364/fio.2024.fw1c.2">10.1364/fio.2024.fw1c.2</a>'
  apa: 'Karnieli, A., Tziperman, O., Roques-Carmes, C., &#38; Fan, S. (2024). Coherent
    generation of decoherence-free states in nonlinear waveguide quantum electrodynamics.
    In <i>Frontiers in Optics + Laser Science 2024 </i>. Denver, CO, United States:
    Optica Publishing Group. <a href="https://doi.org/10.1364/fio.2024.fw1c.2">https://doi.org/10.1364/fio.2024.fw1c.2</a>'
  chicago: Karnieli, Aviv, Offek Tziperman, Charles Roques-Carmes, and Shanhui Fan.
    “Coherent Generation of Decoherence-Free States in Nonlinear Waveguide Quantum
    Electrodynamics.” In <i>Frontiers in Optics + Laser Science 2024 </i>. Optica
    Publishing Group, 2024. <a href="https://doi.org/10.1364/fio.2024.fw1c.2">https://doi.org/10.1364/fio.2024.fw1c.2</a>.
  ieee: A. Karnieli, O. Tziperman, C. Roques-Carmes, and S. Fan, “Coherent generation
    of decoherence-free states in nonlinear waveguide quantum electrodynamics,” in
    <i>Frontiers in Optics + Laser Science 2024 </i>, Denver, CO, United States, 2024.
  ista: 'Karnieli A, Tziperman O, Roques-Carmes C, Fan S. 2024. Coherent generation
    of decoherence-free states in nonlinear waveguide quantum electrodynamics. Frontiers
    in Optics + Laser Science 2024 . FiO, LS: Fronitiers in Optics + Laser Science,
    FW1C.2.'
  mla: Karnieli, Aviv, et al. “Coherent Generation of Decoherence-Free States in Nonlinear
    Waveguide Quantum Electrodynamics.” <i>Frontiers in Optics + Laser Science 2024
    </i>, FW1C.2, Optica Publishing Group, 2024, doi:<a href="https://doi.org/10.1364/fio.2024.fw1c.2">10.1364/fio.2024.fw1c.2</a>.
  short: A. Karnieli, O. Tziperman, C. Roques-Carmes, S. Fan, in:, Frontiers in Optics
    + Laser Science 2024 , Optica Publishing Group, 2024.
conference:
  end_date: 2024-09-26
  location: Denver, CO, United States
  name: 'FiO, LS: Fronitiers in Optics + Laser Science'
  start_date: 2024-09-23
date_created: 2026-03-30T12:22:48Z
date_published: 2024-10-01T00:00:00Z
date_updated: 2026-05-05T06:40:25Z
day: '01'
doi: 10.1364/fio.2024.fw1c.2
extern: '1'
language:
- iso: eng
month: '10'
oa_version: None
publication: 'Frontiers in Optics + Laser Science 2024 '
publication_identifier:
  eisbn:
  - '9781957171951'
publication_status: published
publisher: Optica Publishing Group
quality_controlled: '1'
status: public
title: Coherent generation of decoherence-free states in nonlinear waveguide quantum
  electrodynamics
type: conference
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2024'
...
---
OA_place: repository
OA_type: green
_id: '21672'
abstract:
- lang: eng
  text: We present a framework for the end-to-end optimization of metasurface imaging
    systems that reconstruct targets using compressed sensing, a technique for solving
    underdetermined imaging problems when the target object exhibits sparsity (i.e.
    the object can be described by a small number of non-zero values, but the positions
    of these values are unknown). We nest an iterative, unapproximated compressed
    sensing reconstruction algorithm into our end-to-end optimization pipeline, resulting
    in an interpretable, data-efficient method for maximally leveraging metaoptics
    to exploit object sparsity. We apply our framework to super-resolution imaging
    and high-resolution depth imaging with a phase-change material. In both situations,
    our end-to-end framework computationally discovers optimal metasurface structures
    for compressed sensing recovery, automatically balancing a number of complicated
    design considerations to select an imaging measurement matrix from a complex,
    physically constrained manifold with millions ofdimensions. The optimized metasurface
    imaging systems are robust to noise, significantly improving over random scattering
    surfaces and approaching the ideal compressed sensing performance of a Gaussian
    matrix, showing how a physical metasurface system can demonstrably approach the
    mathematical limits of compressed sensing.
article_processing_charge: No
article_type: original
arxiv: 1
author:
- first_name: Gaurav
  full_name: Arya, Gaurav
  last_name: Arya
- first_name: William F.
  full_name: Li, William F.
  last_name: Li
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Marin
  full_name: Soljačić, Marin
  last_name: Soljačić
- first_name: Steven G.
  full_name: Johnson, Steven G.
  last_name: Johnson
- first_name: Zin
  full_name: Lin, Zin
  last_name: Lin
citation:
  ama: Arya G, Li WF, Roques-Carmes C, Soljačić M, Johnson SG, Lin Z. End-to-end optimization
    of metasurfaces for imaging with compressed sensing. <i>ACS Photonics</i>. 2024.
    doi:<a href="https://doi.org/10.1021/acsphotonics.4c00259">10.1021/acsphotonics.4c00259</a>
  apa: Arya, G., Li, W. F., Roques-Carmes, C., Soljačić, M., Johnson, S. G., &#38;
    Lin, Z. (2024). End-to-end optimization of metasurfaces for imaging with compressed
    sensing. <i>ACS Photonics</i>. American Chemical Society. <a href="https://doi.org/10.1021/acsphotonics.4c00259">https://doi.org/10.1021/acsphotonics.4c00259</a>
  chicago: Arya, Gaurav, William F. Li, Charles Roques-Carmes, Marin Soljačić, Steven
    G. Johnson, and Zin Lin. “End-to-End Optimization of Metasurfaces for Imaging
    with Compressed Sensing.” <i>ACS Photonics</i>. American Chemical Society, 2024.
    <a href="https://doi.org/10.1021/acsphotonics.4c00259">https://doi.org/10.1021/acsphotonics.4c00259</a>.
  ieee: G. Arya, W. F. Li, C. Roques-Carmes, M. Soljačić, S. G. Johnson, and Z. Lin,
    “End-to-end optimization of metasurfaces for imaging with compressed sensing,”
    <i>ACS Photonics</i>. American Chemical Society, 2024.
  ista: Arya G, Li WF, Roques-Carmes C, Soljačić M, Johnson SG, Lin Z. 2024. End-to-end
    optimization of metasurfaces for imaging with compressed sensing. ACS Photonics.
  mla: Arya, Gaurav, et al. “End-to-End Optimization of Metasurfaces for Imaging with
    Compressed Sensing.” <i>ACS Photonics</i>, American Chemical Society, 2024, doi:<a
    href="https://doi.org/10.1021/acsphotonics.4c00259">10.1021/acsphotonics.4c00259</a>.
  short: G. Arya, W.F. Li, C. Roques-Carmes, M. Soljačić, S.G. Johnson, Z. Lin, ACS
    Photonics (2024).
date_created: 2026-04-09T09:10:41Z
date_published: 2024-04-23T00:00:00Z
date_updated: 2026-04-27T09:23:04Z
day: '23'
ddc:
- '530'
doi: 10.1021/acsphotonics.4c00259
extern: '1'
external_id:
  arxiv:
  - '2201.12348'
keyword:
- end-to-end
- optimization
- metasurface
- imaging
- compressed sensing
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.48550/arXiv.2201.12348
month: '04'
oa: 1
oa_version: Preprint
publication: ACS Photonics
publication_identifier:
  eissn:
  - 2330-4022
publication_status: published
publisher: American Chemical Society
quality_controlled: '1'
scopus_import: '1'
status: public
title: End-to-end optimization of metasurfaces for imaging with compressed sensing
type: journal_article
user_id: ba8df636-2132-11f1-aed0-ed93e2281fdd
year: '2024'
...
---
OA_place: repository
OA_type: green
_id: '21679'
abstract:
- lang: eng
  text: 'The observation that free electrons can interact coherently with quantized
    electromagnetic fields and matter systems has led to a plethora of proposals leveraging
    the unique quantum properties of free electrons. At the heart of these proposals
    lies the assumption of a strong quantum interaction between a flying free electron
    and a photonic mode. However, existing schemes are intrinsically limited by electron
    diffraction, which puts an upper bound on the interaction length and therefore
    the quantum coupling strength. Here, we propose the use of "free-electron fibers'''':
    effectively one-dimensional photonic systems where free electrons co-propagate
    with two guided modes. The first mode applies a ponderomotive trap to the free
    electron, effectively lifting the limitations due to electron diffraction. The
    second mode strongly couples to the guided free electron, with an enhanced coupling
    that is orders of magnitude larger than previous designs. Moreover, the extended
    interaction lengths enabled by our scheme allows for strong single-photon nonlinearities
    mediated by free electrons. We predict a few interesting observable quantum effects
    in our system, such as deterministic single-photon emission and complex, nonlinear
    multimode dynamics. Our proposal paves the way towards the realization of many
    anticipated effects in free-electron quantum optics, such as non-Gaussian light
    generation, deterministic single photon emission, and quantum gates controlled
    by free-electron--photon interactions.'
article_number: '2403.13071'
article_processing_charge: No
arxiv: 1
author:
- first_name: Aviv
  full_name: Karnieli, Aviv
  last_name: Karnieli
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Nicholas
  full_name: Rivera, Nicholas
  last_name: Rivera
- first_name: Shanhui
  full_name: Fan, Shanhui
  last_name: Fan
citation:
  ama: Karnieli A, Roques-Carmes C, Rivera N, Fan S. Strong coupling and single-photon
    nonlinearity in free-electron quantum optics. <i>arXiv</i>. doi:<a href="https://doi.org/10.48550/arXiv.2403.13071">10.48550/arXiv.2403.13071</a>
  apa: Karnieli, A., Roques-Carmes, C., Rivera, N., &#38; Fan, S. (n.d.). Strong coupling
    and single-photon nonlinearity in free-electron quantum optics. <i>arXiv</i>.
    <a href="https://doi.org/10.48550/arXiv.2403.13071">https://doi.org/10.48550/arXiv.2403.13071</a>
  chicago: Karnieli, Aviv, Charles Roques-Carmes, Nicholas Rivera, and Shanhui Fan.
    “Strong Coupling and Single-Photon Nonlinearity in Free-Electron Quantum Optics.”
    <i>ArXiv</i>, n.d. <a href="https://doi.org/10.48550/arXiv.2403.13071">https://doi.org/10.48550/arXiv.2403.13071</a>.
  ieee: A. Karnieli, C. Roques-Carmes, N. Rivera, and S. Fan, “Strong coupling and
    single-photon nonlinearity in free-electron quantum optics,” <i>arXiv</i>. .
  ista: Karnieli A, Roques-Carmes C, Rivera N, Fan S. Strong coupling and single-photon
    nonlinearity in free-electron quantum optics. arXiv, 2403.13071.
  mla: Karnieli, Aviv, et al. “Strong Coupling and Single-Photon Nonlinearity in Free-Electron
    Quantum Optics.” <i>ArXiv</i>, 2403.13071, doi:<a href="https://doi.org/10.48550/arXiv.2403.13071">10.48550/arXiv.2403.13071</a>.
  short: A. Karnieli, C. Roques-Carmes, N. Rivera, S. Fan, ArXiv (n.d.).
date_created: 2026-04-09T09:10:41Z
date_published: 2024-03-19T00:00:00Z
date_updated: 2026-04-13T10:57:33Z
day: '19'
doi: 10.48550/arXiv.2403.13071
extern: '1'
external_id:
  arxiv:
  - '2403.13071'
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.48550/arXiv.2403.13071
month: '03'
oa: 1
oa_version: Preprint
publication: arXiv
publication_status: submitted
scopus_import: '1'
status: public
title: Strong coupling and single-photon nonlinearity in free-electron quantum optics
type: preprint
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2024'
...
---
OA_place: repository
OA_type: green
_id: '21680'
abstract:
- lang: eng
  text: Multimode squeezed light is enticing for several applications, from squeezed
    frequency combs for spectroscopy to signal multiplexing in optical computing.
    To generate squeezing in multiple frequency modes, optical parametric oscillators
    have been vital in realizing multimode squeezed vacuum states through second-order
    nonlinear processes. However, most work has focused on generating multimode squeezed
    vacua and squeezing in mode superpositions (supermodes). Bright squeezing in multiple
    discrete frequency modes, if realized, could unlock novel applications in quantum-enhanced
    spectroscopy and optical quantum computing. Here, we show how $Q$ factor engineering
    of a multimode nonlinear cavity with cascaded three wave mixing processes creates
    strong, spectrally tunable single mode output amplitude noise squeezing over 10
    dB below the shot noise limit. In addition, we demonstrate squeezing for multiple
    discrete frequency modes above threshold. This bright squeezing arises from enhancement
    of the (noiseless) nonlinear rate relative to decay rates in the system due to
    the cascaded generation of photons in a single idler "bath" mode. A natural consequence
    of the strong nonlinear coupling in our system is the creation of an effective
    cavity in the synthetic frequency dimension that sustains Bloch oscillations in
    the modal energy distribution. Bloch mode engineering could provide an opportunity
    to better control nonlinear energy flow in the synthetic frequency dimension,
    with exciting applications in quantum random walks and topological photonics.
    Lastly, we show evidence of long-range correlations in amplitude noise between
    discrete frequency modes, pointing towards the potential of long-range entanglement
    in a synthetic frequency dimension.
article_number: '2405.05201'
article_processing_charge: No
arxiv: 1
author:
- first_name: Sahil
  full_name: Pontula, Sahil
  last_name: Pontula
- first_name: Yannick
  full_name: Salamin, Yannick
  last_name: Salamin
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Marin
  full_name: Soljacic, Marin
  last_name: Soljacic
citation:
  ama: Pontula S, Salamin Y, Roques-Carmes C, Soljacic M. Multimode amplitude squeezing
    through cascaded nonlinear optical processes. <i>arXiv</i>. doi:<a href="https://doi.org/10.48550/arXiv.2405.05201">10.48550/arXiv.2405.05201</a>
  apa: Pontula, S., Salamin, Y., Roques-Carmes, C., &#38; Soljacic, M. (n.d.). Multimode
    amplitude squeezing through cascaded nonlinear optical processes. <i>arXiv</i>.
    <a href="https://doi.org/10.48550/arXiv.2405.05201">https://doi.org/10.48550/arXiv.2405.05201</a>
  chicago: Pontula, Sahil, Yannick Salamin, Charles Roques-Carmes, and Marin Soljacic.
    “Multimode Amplitude Squeezing through Cascaded Nonlinear Optical Processes.”
    <i>ArXiv</i>, n.d. <a href="https://doi.org/10.48550/arXiv.2405.05201">https://doi.org/10.48550/arXiv.2405.05201</a>.
  ieee: S. Pontula, Y. Salamin, C. Roques-Carmes, and M. Soljacic, “Multimode amplitude
    squeezing through cascaded nonlinear optical processes,” <i>arXiv</i>. .
  ista: Pontula S, Salamin Y, Roques-Carmes C, Soljacic M. Multimode amplitude squeezing
    through cascaded nonlinear optical processes. arXiv, 2405.05201.
  mla: Pontula, Sahil, et al. “Multimode Amplitude Squeezing through Cascaded Nonlinear
    Optical Processes.” <i>ArXiv</i>, 2405.05201, doi:<a href="https://doi.org/10.48550/arXiv.2405.05201">10.48550/arXiv.2405.05201</a>.
  short: S. Pontula, Y. Salamin, C. Roques-Carmes, M. Soljacic, ArXiv (n.d.).
date_created: 2026-04-09T09:10:41Z
date_published: 2024-05-08T00:00:00Z
date_updated: 2026-04-13T10:51:17Z
day: '08'
doi: 10.48550/arXiv.2405.05201
extern: '1'
external_id:
  arxiv:
  - '2405.05201'
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.48550/arXiv.2405.05201
month: '05'
oa: 1
oa_version: Preprint
publication: arXiv
publication_status: submitted
scopus_import: '1'
status: public
title: Multimode amplitude squeezing through cascaded nonlinear optical processes
type: preprint
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2024'
...
---
OA_place: repository
OA_type: green
_id: '21681'
abstract:
- lang: eng
  text: Enhancing interactions in many-body quantum systems, while protecting them
    from environmental decoherence, is at the heart of many quantum technologies.
    Waveguide quantum electrodynamics is a promising platform for achieving this,
    as it hosts infinite-range interactions and decoherence-free subspaces of quantum
    emitters. However, as coherent interactions between emitters are typically washed
    out in the wavelength-spacing regime hosting decoherence-free states, coherent
    control over the latter becomes limited, and many-body Hamiltonians in this important
    regime remain out of reach. Here we show that by incorporating emitter arrays
    with nonlinear waveguides hosting parametric gain, we obtain a unique class of
    many-body interaction Hamiltonians with coupling strengths that increase with
    emitter spacing, and persist even for wavelength-spaced arrays. We then propose
    to use these Hamiltonians to coherently generate decoherence-free states directly
    from the ground state, using only global squeezing drives, without the need for
    local addressing of individual emitters. Interestingly, we find that the dynamics
    approaches a unitary evolution in the limit of weak intra-waveguide squeezing,
    and discuss potential experimental realizations of this effect. Our results pave
    the way towards coherent control protocols in waveguide quantum electrodynamics,
    with applications including quantum computing, simulation, memory and nonclassical
    light generation.
article_number: '2405.20241'
article_processing_charge: No
arxiv: 1
author:
- first_name: Aviv
  full_name: Karnieli, Aviv
  last_name: Karnieli
- first_name: Offek
  full_name: Tziperman, Offek
  last_name: Tziperman
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Shanhui
  full_name: Fan, Shanhui
  last_name: Fan
citation:
  ama: Karnieli A, Tziperman O, Roques-Carmes C, Fan S. Decoherence-free many-body
    Hamiltonians in nonlinear waveguide quantum electrodynamics. <i>arXiv</i>. doi:<a
    href="https://doi.org/10.48550/arXiv.2405.20241">10.48550/arXiv.2405.20241</a>
  apa: Karnieli, A., Tziperman, O., Roques-Carmes, C., &#38; Fan, S. (n.d.). Decoherence-free
    many-body Hamiltonians in nonlinear waveguide quantum electrodynamics. <i>arXiv</i>.
    <a href="https://doi.org/10.48550/arXiv.2405.20241">https://doi.org/10.48550/arXiv.2405.20241</a>
  chicago: Karnieli, Aviv, Offek Tziperman, Charles Roques-Carmes, and Shanhui Fan.
    “Decoherence-Free Many-Body Hamiltonians in Nonlinear Waveguide Quantum Electrodynamics.”
    <i>ArXiv</i>, n.d. <a href="https://doi.org/10.48550/arXiv.2405.20241">https://doi.org/10.48550/arXiv.2405.20241</a>.
  ieee: A. Karnieli, O. Tziperman, C. Roques-Carmes, and S. Fan, “Decoherence-free
    many-body Hamiltonians in nonlinear waveguide quantum electrodynamics,” <i>arXiv</i>.
    .
  ista: Karnieli A, Tziperman O, Roques-Carmes C, Fan S. Decoherence-free many-body
    Hamiltonians in nonlinear waveguide quantum electrodynamics. arXiv, 2405.20241.
  mla: Karnieli, Aviv, et al. “Decoherence-Free Many-Body Hamiltonians in Nonlinear
    Waveguide Quantum Electrodynamics.” <i>ArXiv</i>, 2405.20241, doi:<a href="https://doi.org/10.48550/arXiv.2405.20241">10.48550/arXiv.2405.20241</a>.
  short: A. Karnieli, O. Tziperman, C. Roques-Carmes, S. Fan, ArXiv (n.d.).
date_created: 2026-04-09T09:10:41Z
date_published: 2024-05-30T00:00:00Z
date_updated: 2026-04-13T10:53:32Z
day: '30'
doi: 10.48550/arXiv.2405.20241
extern: '1'
external_id:
  arxiv:
  - '2405.20241'
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.48550/arXiv.2405.20241
month: '05'
oa: 1
oa_version: Preprint
publication: arXiv
publication_status: submitted
scopus_import: '1'
status: public
title: Decoherence-free many-body Hamiltonians in nonlinear waveguide quantum electrodynamics
type: preprint
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2024'
...
---
OA_place: repository
OA_type: green
_id: '21683'
abstract:
- lang: eng
  text: Optical computing often employs tailor-made hardware to implement specific
    algorithms, trading generality for improved performance in key aspects like speed
    and power efficiency. An important computing approach that is still missing its
    corresponding optical hardware is probabilistic computing, used e.g. for solving
    difficult combinatorial optimization problems. In this study, we propose an experimentally
    viable photonic approach to solve arbitrary probabilistic computing problems.
    Our method relies on the insight that coherent Ising machines composed of coupled
    and biased optical parametric oscillators can emulate stochastic logic. We demonstrate
    the feasibility of our approach by using numerical simulations equivalent to the
    full density matrix formulation of coupled optical parametric oscillators.
article_number: '2406.04000'
article_processing_charge: No
arxiv: 1
author:
- first_name: Michael
  full_name: Horodynski, Michael
  last_name: Horodynski
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Yannick
  full_name: Salamin, Yannick
  last_name: Salamin
- first_name: Seou
  full_name: Choi, Seou
  last_name: Choi
- first_name: Jamison
  full_name: Sloan, Jamison
  last_name: Sloan
- first_name: Di
  full_name: Luo, Di
  last_name: Luo
- first_name: Marin
  full_name: Soljačić, Marin
  last_name: Soljačić
citation:
  ama: Horodynski M, Roques-Carmes C, Salamin Y, et al. Stochastic logic in biased
    coupled photonic probabilistic bits. <i>arXiv</i>. doi:<a href="https://doi.org/10.48550/arXiv.2406.04000">10.48550/arXiv.2406.04000</a>
  apa: Horodynski, M., Roques-Carmes, C., Salamin, Y., Choi, S., Sloan, J., Luo, D.,
    &#38; Soljačić, M. (n.d.). Stochastic logic in biased coupled photonic probabilistic
    bits. <i>arXiv</i>. <a href="https://doi.org/10.48550/arXiv.2406.04000">https://doi.org/10.48550/arXiv.2406.04000</a>
  chicago: Horodynski, Michael, Charles Roques-Carmes, Yannick Salamin, Seou Choi,
    Jamison Sloan, Di Luo, and Marin Soljačić. “Stochastic Logic in Biased Coupled
    Photonic Probabilistic Bits.” <i>ArXiv</i>, n.d. <a href="https://doi.org/10.48550/arXiv.2406.04000">https://doi.org/10.48550/arXiv.2406.04000</a>.
  ieee: M. Horodynski <i>et al.</i>, “Stochastic logic in biased coupled photonic
    probabilistic bits,” <i>arXiv</i>. .
  ista: Horodynski M, Roques-Carmes C, Salamin Y, Choi S, Sloan J, Luo D, Soljačić
    M. Stochastic logic in biased coupled photonic probabilistic bits. arXiv, 2406.04000.
  mla: Horodynski, Michael, et al. “Stochastic Logic in Biased Coupled Photonic Probabilistic
    Bits.” <i>ArXiv</i>, 2406.04000, doi:<a href="https://doi.org/10.48550/arXiv.2406.04000">10.48550/arXiv.2406.04000</a>.
  short: M. Horodynski, C. Roques-Carmes, Y. Salamin, S. Choi, J. Sloan, D. Luo, M.
    Soljačić, ArXiv (n.d.).
date_created: 2026-04-09T09:10:41Z
date_published: 2024-06-06T00:00:00Z
date_updated: 2026-04-13T10:52:25Z
day: '06'
doi: 10.48550/arXiv.2406.04000
extern: '1'
external_id:
  arxiv:
  - '2406.04000'
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.48550/arXiv.2406.04000
month: '06'
oa: 1
oa_version: Preprint
publication: arXiv
publication_status: submitted
scopus_import: '1'
status: public
title: Stochastic logic in biased coupled photonic probabilistic bits
type: preprint
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2024'
...
---
OA_place: repository
OA_type: green
_id: '21684'
abstract:
- lang: eng
  text: This study focuses on advancing metascintillators to break the 100 ps barrier
    and approach the 10 ps target. We exploit nanophotonic features, specifically
    the Purcell effect, to shape and enhance the scintillation properties of the first-generation
    metascintillator. We demonstrate that a faster emission is achievable along with
    a more efficient conversion efficiency. This results in a coincidence time resolution
    improved by a factor of 1.6, crucial for TOF-PET applications.
article_number: '2406.15058'
article_processing_charge: No
arxiv: 1
author:
- first_name: Avner
  full_name: Shultzman, Avner
  last_name: Shultzman
- first_name: Roman
  full_name: Schütz, Roman
  last_name: Schütz
- first_name: Yaniv
  full_name: Kurman, Yaniv
  last_name: Kurman
- first_name: Neta
  full_name: Lahav, Neta
  last_name: Lahav
- first_name: George
  full_name: Dosovitskiy, George
  last_name: Dosovitskiy
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Yehonadav
  full_name: Bekenstein, Yehonadav
  last_name: Bekenstein
- first_name: Georgios
  full_name: Konstantinou, Georgios
  last_name: Konstantinou
- first_name: Riccardo
  full_name: Latella, Riccardo
  last_name: Latella
- first_name: Lei
  full_name: Zhang, Lei
  last_name: Zhang
- first_name: Francis Loignon-Houle
  full_name: Francis Loignon-Houle, Francis Loignon-Houle
  last_name: Francis Loignon-Houle
- first_name: Antonio J.
  full_name: Gonzalez, Antonio J.
  last_name: Gonzalez
- first_name: José María
  full_name: Benlloch, José María
  last_name: Benlloch
- first_name: Ido
  full_name: Kaminer, Ido
  last_name: Kaminer
- first_name: Paul
  full_name: Lecoq, Paul
  last_name: Lecoq
citation:
  ama: Shultzman A, Schütz R, Kurman Y, et al. Towards a second generation of metascintillators
    using the Purcell effect. <i>arXiv</i>. doi:<a href="https://doi.org/10.48550/arXiv.2406.15058">10.48550/arXiv.2406.15058</a>
  apa: Shultzman, A., Schütz, R., Kurman, Y., Lahav, N., Dosovitskiy, G., Roques-Carmes,
    C., … Lecoq, P. (n.d.). Towards a second generation of metascintillators using
    the Purcell effect. <i>arXiv</i>. <a href="https://doi.org/10.48550/arXiv.2406.15058">https://doi.org/10.48550/arXiv.2406.15058</a>
  chicago: Shultzman, Avner, Roman Schütz, Yaniv Kurman, Neta Lahav, George Dosovitskiy,
    Charles Roques-Carmes, Yehonadav Bekenstein, et al. “Towards a Second Generation
    of Metascintillators Using the Purcell Effect.” <i>ArXiv</i>, n.d. <a href="https://doi.org/10.48550/arXiv.2406.15058">https://doi.org/10.48550/arXiv.2406.15058</a>.
  ieee: A. Shultzman <i>et al.</i>, “Towards a second generation of metascintillators
    using the Purcell effect,” <i>arXiv</i>. .
  ista: Shultzman A, Schütz R, Kurman Y, Lahav N, Dosovitskiy G, Roques-Carmes C,
    Bekenstein Y, Konstantinou G, Latella R, Zhang L, Francis Loignon-Houle FL-H,
    Gonzalez AJ, Benlloch JM, Kaminer I, Lecoq P. Towards a second generation of metascintillators
    using the Purcell effect. arXiv, 2406.15058.
  mla: Shultzman, Avner, et al. “Towards a Second Generation of Metascintillators
    Using the Purcell Effect.” <i>ArXiv</i>, 2406.15058, doi:<a href="https://doi.org/10.48550/arXiv.2406.15058">10.48550/arXiv.2406.15058</a>.
  short: A. Shultzman, R. Schütz, Y. Kurman, N. Lahav, G. Dosovitskiy, C. Roques-Carmes,
    Y. Bekenstein, G. Konstantinou, R. Latella, L. Zhang, F.L.-H. Francis Loignon-Houle,
    A.J. Gonzalez, J.M. Benlloch, I. Kaminer, P. Lecoq, ArXiv (n.d.).
date_created: 2026-04-09T09:10:41Z
date_published: 2024-06-21T00:00:00Z
date_updated: 2026-04-13T10:50:23Z
day: '21'
doi: 10.48550/arXiv.2406.15058
extern: '1'
external_id:
  arxiv:
  - '2406.15058'
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.48550/arXiv.2406.15058
month: '06'
oa: 1
oa_version: Preprint
publication: arXiv
publication_status: submitted
scopus_import: '1'
status: public
title: Towards a second generation of metascintillators using the Purcell effect
type: preprint
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2024'
...
---
OA_place: repository
OA_type: green
_id: '21685'
abstract:
- lang: eng
  text: Nonlinear optics has become the workhorse for countless applications in classical
    and quantum optics, from optical bistability to single photon pair generation.
    However, the intrinsic weakness of optical nonlinearity has meant that large input
    powers and weak output powers are often a necessity in nonlinear frequency conversion.
    Here, motivated by recent advances in using non-Hermitian photonics and gain/loss
    engineering to enable non-reciprocal light transport, we explore how the interplay
    between non-Hermiticity and optical nonlinearity leads to a fundamentally new
    regime of nonlinear frequency conversion. We show how non-Hermitian coupling between
    discrete frequency modes can result in non-reciprocal flow of energy in the frequency
    dimension, closely resembling the non-Hermitian skin effect (NHSE). Applying our
    theory to a multimode nonlinear cavity supporting cascaded nonlinear processes,
    we create an asymmetric infrared (IR) comb that features a ``skin'' frequency
    mode populated with efficiency exceeding 85\%. Furthermore, we demonstrate how
    three-wave mixing processes in the non-reciprocal infrared comb we generate enables
    terahertz (THz) generation exceeding the Manley-Rowe limit. We then show how the
    non-reciprocal frequency conversion is robust against cavity defects and disorder
    that cause random fluctuations in the dissipation rate for different modes. Moreover,
    in certain regimes, the nonlinear, non-Hermitian system supports stable limit
    cycles that can enable multimode pulsing with picosecond pulse widths and GHz
    repetition rates. Finally, we explore how the system can be applied to generate
    simultaneous IR and THz frequency combs, potentially unlocking novel applications
    in spectroscopy and metrology.
article_number: '2409.14299'
article_processing_charge: No
arxiv: 1
author:
- first_name: Sahil
  full_name: Pontula, Sahil
  last_name: Pontula
- first_name: Sachin
  full_name: Vaidya, Sachin
  last_name: Vaidya
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Shiekh Zia
  full_name: Uddin, Shiekh Zia
  last_name: Uddin
- first_name: Marin
  full_name: Soljacic, Marin
  last_name: Soljacic
- first_name: Yannick
  full_name: Salamin, Yannick
  last_name: Salamin
citation:
  ama: Pontula S, Vaidya S, Roques-Carmes C, Uddin SZ, Soljacic M, Salamin Y. Non-reciprocal
    frequency conversion in a multimode nonlinear system. <i>arXiv</i>. doi:<a href="https://doi.org/10.48550/arXiv.2409.14299">10.48550/arXiv.2409.14299</a>
  apa: Pontula, S., Vaidya, S., Roques-Carmes, C., Uddin, S. Z., Soljacic, M., &#38;
    Salamin, Y. (n.d.). Non-reciprocal frequency conversion in a multimode nonlinear
    system. <i>arXiv</i>. <a href="https://doi.org/10.48550/arXiv.2409.14299">https://doi.org/10.48550/arXiv.2409.14299</a>
  chicago: Pontula, Sahil, Sachin Vaidya, Charles Roques-Carmes, Shiekh Zia Uddin,
    Marin Soljacic, and Yannick Salamin. “Non-Reciprocal Frequency Conversion in a
    Multimode Nonlinear System.” <i>ArXiv</i>, n.d. <a href="https://doi.org/10.48550/arXiv.2409.14299">https://doi.org/10.48550/arXiv.2409.14299</a>.
  ieee: S. Pontula, S. Vaidya, C. Roques-Carmes, S. Z. Uddin, M. Soljacic, and Y.
    Salamin, “Non-reciprocal frequency conversion in a multimode nonlinear system,”
    <i>arXiv</i>. .
  ista: Pontula S, Vaidya S, Roques-Carmes C, Uddin SZ, Soljacic M, Salamin Y. Non-reciprocal
    frequency conversion in a multimode nonlinear system. arXiv, 2409.14299.
  mla: Pontula, Sahil, et al. “Non-Reciprocal Frequency Conversion in a Multimode
    Nonlinear System.” <i>ArXiv</i>, 2409.14299, doi:<a href="https://doi.org/10.48550/arXiv.2409.14299">10.48550/arXiv.2409.14299</a>.
  short: S. Pontula, S. Vaidya, C. Roques-Carmes, S.Z. Uddin, M. Soljacic, Y. Salamin,
    ArXiv (n.d.).
date_created: 2026-04-09T09:10:41Z
date_published: 2024-09-22T00:00:00Z
date_updated: 2026-04-13T10:49:12Z
day: '22'
doi: 10.48550/arXiv.2409.14299
extern: '1'
external_id:
  arxiv:
  - '2409.14299'
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.48550/arXiv.2409.14299
month: '09'
oa: 1
oa_version: Preprint
publication: arXiv
publication_status: submitted
scopus_import: '1'
status: public
title: Non-reciprocal frequency conversion in a multimode nonlinear system
type: preprint
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2024'
...
---
OA_place: repository
OA_type: green
_id: '21686'
abstract:
- lang: eng
  text: Scintillation describes the conversion of high-energy particles into light
    in transparent media and finds diverse applications such as high-energy particle
    detection and industrial and medical imaging. This process operates on multiple
    timescales, with the final radiative step consisting of spontaneous emission,
    which can be modeled within the framework of quasi-equilibrium fluctuational electrodynamics.
    Scintillation can therefore be controlled and enhanced via nanophotonic effects,
    which has been proposed and experimentally demonstrated. Such designs have thus
    far obeyed Lorentz reciprocity, meaning there is a direct equivalence between
    scintillation emission and absorption by the scintillator. However, scintillators
    that do not obey Lorentz reciprocity have not been explored, even though they
    represent a novel platform for probing emission which is both nonequilibrium and
    nonreciprocal in nature. In this work, we propose to harness nonreciprocity to
    achieve directional control of scintillation emission, granting an additional
    degree of control over scintillation. Such directionality of light output is important
    in improving collection efficiencies along the directions where detectors are
    located. We present the design of a nonreciprocal scintillator using a one-dimensional
    magnetophotonic crystal in the Voigt configuration. Our work demonstrates the
    potential of controlling nonequilibrium emission such as scintillation by breaking
    reciprocity and expands the space of nanophotonic design for achieving such control.
article_number: '2409.17002'
article_processing_charge: No
arxiv: 1
author:
- first_name: Olivia Y.
  full_name: Long, Olivia Y.
  last_name: Long
- first_name: Simo
  full_name: Pajovic, Simo
  last_name: Pajovic
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Yoichiro
  full_name: Tsurimaki, Yoichiro
  last_name: Tsurimaki
- first_name: Nicholas
  full_name: Rivera, Nicholas
  last_name: Rivera
- first_name: Marin
  full_name: Soljačić, Marin
  last_name: Soljačić
- first_name: Svetlana V.
  full_name: Boriskina, Svetlana V.
  last_name: Boriskina
- first_name: Shanhui
  full_name: Fan, Shanhui
  last_name: Fan
citation:
  ama: Long OY, Pajovic S, Roques-Carmes C, et al. Nonreciprocal scintillation using
    one-dimensional magneto-optical photonic crystals. <i>arXiv</i>. doi:<a href="https://doi.org/10.48550/arXiv.2409.17002">10.48550/arXiv.2409.17002</a>
  apa: Long, O. Y., Pajovic, S., Roques-Carmes, C., Tsurimaki, Y., Rivera, N., Soljačić,
    M., … Fan, S. (n.d.). Nonreciprocal scintillation using one-dimensional magneto-optical
    photonic crystals. <i>arXiv</i>. <a href="https://doi.org/10.48550/arXiv.2409.17002">https://doi.org/10.48550/arXiv.2409.17002</a>
  chicago: Long, Olivia Y., Simo Pajovic, Charles Roques-Carmes, Yoichiro Tsurimaki,
    Nicholas Rivera, Marin Soljačić, Svetlana V. Boriskina, and Shanhui Fan. “Nonreciprocal
    Scintillation Using One-Dimensional Magneto-Optical Photonic Crystals.” <i>ArXiv</i>,
    n.d. <a href="https://doi.org/10.48550/arXiv.2409.17002">https://doi.org/10.48550/arXiv.2409.17002</a>.
  ieee: O. Y. Long <i>et al.</i>, “Nonreciprocal scintillation using one-dimensional
    magneto-optical photonic crystals,” <i>arXiv</i>. .
  ista: Long OY, Pajovic S, Roques-Carmes C, Tsurimaki Y, Rivera N, Soljačić M, Boriskina
    SV, Fan S. Nonreciprocal scintillation using one-dimensional magneto-optical photonic
    crystals. arXiv, 2409.17002.
  mla: Long, Olivia Y., et al. “Nonreciprocal Scintillation Using One-Dimensional
    Magneto-Optical Photonic Crystals.” <i>ArXiv</i>, 2409.17002, doi:<a href="https://doi.org/10.48550/arXiv.2409.17002">10.48550/arXiv.2409.17002</a>.
  short: O.Y. Long, S. Pajovic, C. Roques-Carmes, Y. Tsurimaki, N. Rivera, M. Soljačić,
    S.V. Boriskina, S. Fan, ArXiv (n.d.).
date_created: 2026-04-09T09:10:41Z
date_published: 2024-09-25T00:00:00Z
date_updated: 2026-04-13T10:48:09Z
day: '25'
doi: 10.48550/arXiv.2409.17002
extern: '1'
external_id:
  arxiv:
  - '2409.17002'
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.48550/arXiv.2409.17002
month: '09'
oa: 1
oa_version: Preprint
publication: arXiv
publication_status: submitted
scopus_import: '1'
status: public
title: Nonreciprocal scintillation using one-dimensional magneto-optical photonic
  crystals
type: preprint
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2024'
...
---
OA_place: repository
OA_type: green
_id: '21689'
abstract:
- lang: eng
  text: Metasurfaces -- ultrathin structures composed of subwavelength optical elements
    -- have revolutionized light manipulation by enabling precise control over electromagnetic
    waves' amplitude, phase, polarization, and spectral properties. Concurrently,
    computational imaging leverages algorithms to reconstruct images from optically
    processed signals, overcoming limitations of traditional imaging systems. This
    review explores the synergistic integration of metaoptics and computational imaging,
    "computational metaoptics," which combines the physical wavefront shaping ability
    of metasurfaces with advanced computational algorithms to enhance imaging performance
    beyond conventional limits. We discuss how computational metaoptics addresses
    the inherent limitations of single-layer metasurfaces in achieving multifunctionality
    without compromising efficiency. By treating metasurfaces as physical preconditioners
    and co-designing them with reconstruction algorithms through end-to-end (inverse)
    design, it is possible to jointly optimize the optical hardware and computational
    software. This holistic approach allows for the automatic discovery of optimal
    metasurface designs and reconstruction methods that significantly improve imaging
    capabilities. Advanced applications enabled by computational metaoptics are highlighted,
    including phase imaging and quantum state measurement, which benefit from the
    metasurfaces' ability to manipulate complex light fields and the computational
    algorithms' capacity to reconstruct high-dimensional information. We also examine
    performance evaluation challenges, emphasizing the need for new metrics that account
    for the combined optical and computational nature of these systems. Finally, we
    identify new frontiers in computational metaoptics which point toward a future
    where computational metaoptics may play a central role in advancing imaging science
    and technology.
article_number: '2411.09133'
article_processing_charge: No
arxiv: 1
author:
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Kai
  full_name: Wang, Kai
  last_name: Wang
- first_name: Yuanmu
  full_name: Yang, Yuanmu
  last_name: Yang
- first_name: Arka
  full_name: Majumdar, Arka
  last_name: Majumdar
- first_name: Zin
  full_name: Lin, Zin
  last_name: Lin
citation:
  ama: Roques-Carmes C, Wang K, Yang Y, Majumdar A, Lin Z. Computational metaoptics
    for imaging. <i>arXiv</i>. doi:<a href="https://doi.org/10.48550/arXiv.2411.09133">10.48550/arXiv.2411.09133</a>
  apa: Roques-Carmes, C., Wang, K., Yang, Y., Majumdar, A., &#38; Lin, Z. (n.d.).
    Computational metaoptics for imaging. <i>arXiv</i>. <a href="https://doi.org/10.48550/arXiv.2411.09133">https://doi.org/10.48550/arXiv.2411.09133</a>
  chicago: Roques-Carmes, Charles, Kai Wang, Yuanmu Yang, Arka Majumdar, and Zin Lin.
    “Computational Metaoptics for Imaging.” <i>ArXiv</i>, n.d. <a href="https://doi.org/10.48550/arXiv.2411.09133">https://doi.org/10.48550/arXiv.2411.09133</a>.
  ieee: C. Roques-Carmes, K. Wang, Y. Yang, A. Majumdar, and Z. Lin, “Computational
    metaoptics for imaging,” <i>arXiv</i>. .
  ista: Roques-Carmes C, Wang K, Yang Y, Majumdar A, Lin Z. Computational metaoptics
    for imaging. arXiv, 2411.09133.
  mla: Roques-Carmes, Charles, et al. “Computational Metaoptics for Imaging.” <i>ArXiv</i>,
    2411.09133, doi:<a href="https://doi.org/10.48550/arXiv.2411.09133">10.48550/arXiv.2411.09133</a>.
  short: C. Roques-Carmes, K. Wang, Y. Yang, A. Majumdar, Z. Lin, ArXiv (n.d.).
date_created: 2026-04-09T09:10:41Z
date_published: 2024-11-14T00:00:00Z
date_updated: 2026-04-13T09:53:49Z
day: '14'
doi: 10.48550/arXiv.2411.09133
extern: '1'
external_id:
  arxiv:
  - '2411.09133'
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.48550/arXiv.2411.09133
month: '11'
oa: 1
oa_version: Preprint
publication: arXiv
publication_status: submitted
scopus_import: '1'
status: public
title: Computational metaoptics for imaging
type: preprint
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2024'
...
---
OA_place: repository
OA_type: green
_id: '21690'
abstract:
- lang: eng
  text: Many quantum systems exhibit high sensitivity to their initial conditions,
    where microscopic quantum fluctuations can significantly influence macroscopic
    observables. Understanding how quantum states may influence the behavior of nonlinear
    dynamic systems may open new avenues in controlling light-matter interactions.
    To explore this issue, we analyze the sensitivity of a fundamental quantum optical
    process - parametric oscillation - to quantum initializations. Focusing on optical
    parametric oscillators (OPOs), we demonstrate that the quantum statistics of arbitrary
    initial states are imprinted in the early-stage dynamics and can persist in the
    steady-state probabilities. We derive the "quantum sensitivity" of parametric
    oscillators, linking the initial quantum state to the system's steady-state outcomes,
    highlighting how losses and parametric gain govern the system's quantum sensitivity.
    Moreover, we show that these findings extend beyond OPOs to a broader class of
    nonlinear systems, including Josephson junction based superconducting circuits.
    Our work opens the way to a new class of experiments that can test the sensitivity
    of macroscopic systems to quantum initial conditions and offers a pathway for
    controlling systems with quantum degrees of freedom.
article_number: :2412.02887
article_processing_charge: No
arxiv: 1
author:
- first_name: Alex
  full_name: Gu, Alex
  last_name: Gu
- first_name: Jamison
  full_name: Sloan, Jamison
  last_name: Sloan
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Seou
  full_name: Choi, Seou
  last_name: Choi
- first_name: Eric I.
  full_name: Rosenthal, Eric I.
  last_name: Rosenthal
- first_name: Michael
  full_name: Horodynski, Michael
  last_name: Horodynski
- first_name: Yannick
  full_name: Salamin, Yannick
  last_name: Salamin
- first_name: Jelena
  full_name: Vučković, Jelena
  last_name: Vučković
- first_name: Marin
  full_name: Soljačić, Marin
  last_name: Soljačić
citation:
  ama: Gu A, Sloan J, Roques-Carmes C, et al. Quantum sensitivity of parametric oscillators.
    <i>arXiv</i>. doi:<a href="https://doi.org/10.48550/arXiv.2412.02887">10.48550/arXiv.2412.02887</a>
  apa: Gu, A., Sloan, J., Roques-Carmes, C., Choi, S., Rosenthal, E. I., Horodynski,
    M., … Soljačić, M. (n.d.). Quantum sensitivity of parametric oscillators. <i>arXiv</i>.
    <a href="https://doi.org/10.48550/arXiv.2412.02887">https://doi.org/10.48550/arXiv.2412.02887</a>
  chicago: Gu, Alex, Jamison Sloan, Charles Roques-Carmes, Seou Choi, Eric I. Rosenthal,
    Michael Horodynski, Yannick Salamin, Jelena Vučković, and Marin Soljačić. “Quantum
    Sensitivity of Parametric Oscillators.” <i>ArXiv</i>, n.d. <a href="https://doi.org/10.48550/arXiv.2412.02887">https://doi.org/10.48550/arXiv.2412.02887</a>.
  ieee: A. Gu <i>et al.</i>, “Quantum sensitivity of parametric oscillators,” <i>arXiv</i>.
    .
  ista: Gu A, Sloan J, Roques-Carmes C, Choi S, Rosenthal EI, Horodynski M, Salamin
    Y, Vučković J, Soljačić M. Quantum sensitivity of parametric oscillators. arXiv,
    :2412.02887.
  mla: Gu, Alex, et al. “Quantum Sensitivity of Parametric Oscillators.” <i>ArXiv</i>,
    :2412.02887, doi:<a href="https://doi.org/10.48550/arXiv.2412.02887">10.48550/arXiv.2412.02887</a>.
  short: A. Gu, J. Sloan, C. Roques-Carmes, S. Choi, E.I. Rosenthal, M. Horodynski,
    Y. Salamin, J. Vučković, M. Soljačić, ArXiv (n.d.).
date_created: 2026-04-09T09:10:41Z
date_published: 2024-12-03T00:00:00Z
date_updated: 2026-04-13T09:52:34Z
day: '03'
doi: 10.48550/arXiv.2412.02887
extern: '1'
external_id:
  arxiv:
  - '2412.02887'
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.48550/arXiv.2412.02887
month: '12'
oa: 1
oa_version: Preprint
publication: arXiv
publication_status: submitted
scopus_import: '1'
status: public
title: Quantum sensitivity of parametric oscillators
type: preprint
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2024'
...
---
OA_place: repository
OA_type: green
_id: '21691'
abstract:
- lang: eng
  text: Light-matter interaction with squeezed vacuum has received much interest for
    the ability to enhance the native interaction strength between an atom and a photon
    with a reservoir assumed to have an infinite bandwidth. Here, we study a model
    of parametrically driven cavity quantum electrodynamics (cavity QED) for enhancing
    light-matter interaction while subjected to a finite-bandwidth squeezed vacuum
    drive. Our method is capable of unveiling the effect of relative bandwidth as
    well as squeezing required to observe the anticipated anti-crossing spectrum and
    enhanced cooperativity without the ideal squeezed bath assumption. Furthermore,
    we analyze the practicality of said models when including intrinsic photon loss
    due to resonators imperfection. With these results, we outline the requirements
    for experimentally implementing an effectively squeezed bath in solid-state platforms
    such as InAs quantum dot cavity QED such that \textit{in situ} control and enhancement
    of light-matter interaction could be realized.
article_number: '2412.15068'
article_processing_charge: No
arxiv: 1
author:
- first_name: Trung Kiên
  full_name: Lê, Trung Kiên
  last_name: Lê
- first_name: Daniil M.
  full_name: Lukin, Daniil M.
  last_name: Lukin
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Aviv
  full_name: Karnieli, Aviv
  last_name: Karnieli
- first_name: Eran
  full_name: Lustig, Eran
  last_name: Lustig
- first_name: Melissa A.
  full_name: Guidry, Melissa A.
  last_name: Guidry
- first_name: Shanhui
  full_name: Fan, Shanhui
  last_name: Fan
- first_name: Jelena
  full_name: Vučković, Jelena
  last_name: Vučković
citation:
  ama: Lê TK, Lukin DM, Roques-Carmes C, et al. Cavity quantum electrodynamics in
    finite-bandwidth squeezed reservoir. <i>arXiv</i>. doi:<a href="https://doi.org/10.48550/arXiv.2412.15068">10.48550/arXiv.2412.15068</a>
  apa: Lê, T. K., Lukin, D. M., Roques-Carmes, C., Karnieli, A., Lustig, E., Guidry,
    M. A., … Vučković, J. (n.d.). Cavity quantum electrodynamics in finite-bandwidth
    squeezed reservoir. <i>arXiv</i>. <a href="https://doi.org/10.48550/arXiv.2412.15068">https://doi.org/10.48550/arXiv.2412.15068</a>
  chicago: Lê, Trung Kiên, Daniil M. Lukin, Charles Roques-Carmes, Aviv Karnieli,
    Eran Lustig, Melissa A. Guidry, Shanhui Fan, and Jelena Vučković. “Cavity Quantum
    Electrodynamics in Finite-Bandwidth Squeezed Reservoir.” <i>ArXiv</i>, n.d. <a
    href="https://doi.org/10.48550/arXiv.2412.15068">https://doi.org/10.48550/arXiv.2412.15068</a>.
  ieee: T. K. Lê <i>et al.</i>, “Cavity quantum electrodynamics in finite-bandwidth
    squeezed reservoir,” <i>arXiv</i>. .
  ista: Lê TK, Lukin DM, Roques-Carmes C, Karnieli A, Lustig E, Guidry MA, Fan S,
    Vučković J. Cavity quantum electrodynamics in finite-bandwidth squeezed reservoir.
    arXiv, 2412.15068.
  mla: Lê, Trung Kiên, et al. “Cavity Quantum Electrodynamics in Finite-Bandwidth
    Squeezed Reservoir.” <i>ArXiv</i>, 2412.15068, doi:<a href="https://doi.org/10.48550/arXiv.2412.15068">10.48550/arXiv.2412.15068</a>.
  short: T.K. Lê, D.M. Lukin, C. Roques-Carmes, A. Karnieli, E. Lustig, M.A. Guidry,
    S. Fan, J. Vučković, ArXiv (n.d.).
date_created: 2026-04-09T09:10:41Z
date_published: 2024-12-19T00:00:00Z
date_updated: 2026-04-13T09:50:09Z
day: '19'
doi: 10.48550/arXiv.2412.15068
extern: '1'
external_id:
  arxiv:
  - '2412.15068'
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://doi.org/10.48550/arXiv.2412.15068
month: '12'
oa: 1
oa_version: Preprint
publication: arXiv
publication_status: submitted
scopus_import: '1'
status: public
title: Cavity quantum electrodynamics in finite-bandwidth squeezed reservoir
type: preprint
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2024'
...
---
OA_place: repository
OA_type: green
_id: '21692'
abstract:
- lang: eng
  text: Scintillation, the process of converting high-energy radiation to detectable
    visible light, is pivotal in advanced technologies spanning from medical diagnostics
    to fundamental scientific research. Despite significant advancements toward faster
    and more efficient scintillators, there remains a fundamental limit arising from
    the intrinsic properties of scintillating materials. The scintillation process
    culminates in spontaneous emission of visible light, which is restricted in rate
    by the oscillator strength of individual emission centers. Here, we observe a
    novel collective emission phenomenon under X-ray excitation, breaking this limit
    and accelerating the emission. Our observation reveals that strong interactions
    between simultaneously excited coupled perovskite quantum dots can create collective
    radioluminescence. This effect is characterized by a spectral shift and an enhanced
    rate of emission, with an average lifetime of 230 ps, 14 times faster than their
    room temperature spontaneous emission. It has been established that such quantum
    dots exhibit superfluorescence under UV excitation. However, X-ray superfluorescence
    is inherently different, as each high-energy photon creates multiple synchronized
    excitation events, triggered by a photoelectron and resulting in even faster emission
    rates, a larger spectral shift, and a broader spectrum. This observation is consistent
    with a quantum-optical analysis explaining both the UV-driven and X-ray-driven
    effects. We use a Hanbury-Brown-Twiss g^(2) (τ) setup to analyze the temperature-dependent
    temporal response of these scintillators. Collective radioluminescence breaks
    the limit of scintillation lifetime based on spontaneous emission and could dramatically
    improve time-of-flight detector performance, introducing quantum enhancements
    to scintillation science.
article_number: '2412.21101'
article_processing_charge: No
arxiv: 1
author:
- first_name: Shaul
  full_name: Katznelson, Shaul
  last_name: Katznelson
- first_name: Shai
  full_name: Levy, Shai
  last_name: Levy
- first_name: Alexey
  full_name: Gorlach, Alexey
  last_name: Gorlach
- first_name: Nathan
  full_name: Regev, Nathan
  last_name: Regev
- first_name: Michael
  full_name: Birk, Michael
  last_name: Birk
- first_name: Chen
  full_name: Mechel, Chen
  last_name: Mechel
- first_name: Offek
  full_name: Tziperman, Offek
  last_name: Tziperman
- first_name: Roman
  full_name: Schuetz, Roman
  last_name: Schuetz
- first_name: Rotem
  full_name: Strassberg, Rotem
  last_name: Strassberg
- first_name: Georgy
  full_name: Dosovitsky, Georgy
  last_name: Dosovitsky
- first_name: Charles
  full_name: Roques-Carmes, Charles
  id: e2e68fc9-6505-11ef-a541-eb4e72cc3e82
  last_name: Roques-Carmes
- first_name: Yehonadav
  full_name: Bekenstein, Yehonadav
  last_name: Bekenstein
- first_name: Ido
  full_name: Kaminer, Ido
  last_name: Kaminer
citation:
  ama: Katznelson S, Levy S, Gorlach A, et al. Superfluorescent scintillation from
    coupled perovskite quantum dots. <i>arXiv</i>. doi:<a href="https://doi.org/10.48550/arXiv.2412.21101">10.48550/arXiv.2412.21101</a>
  apa: Katznelson, S., Levy, S., Gorlach, A., Regev, N., Birk, M., Mechel, C., … Kaminer,
    I. (n.d.). Superfluorescent scintillation from coupled perovskite quantum dots.
    <i>arXiv</i>. <a href="https://doi.org/10.48550/arXiv.2412.21101">https://doi.org/10.48550/arXiv.2412.21101</a>
  chicago: Katznelson, Shaul, Shai Levy, Alexey Gorlach, Nathan Regev, Michael Birk,
    Chen Mechel, Offek Tziperman, et al. “Superfluorescent Scintillation from Coupled
    Perovskite Quantum Dots.” <i>ArXiv</i>, n.d. <a href="https://doi.org/10.48550/arXiv.2412.21101">https://doi.org/10.48550/arXiv.2412.21101</a>.
  ieee: S. Katznelson <i>et al.</i>, “Superfluorescent scintillation from coupled
    perovskite quantum dots,” <i>arXiv</i>. .
  ista: Katznelson S, Levy S, Gorlach A, Regev N, Birk M, Mechel C, Tziperman O, Schuetz
    R, Strassberg R, Dosovitsky G, Roques-Carmes C, Bekenstein Y, Kaminer I. Superfluorescent
    scintillation from coupled perovskite quantum dots. arXiv, 2412.21101.
  mla: Katznelson, Shaul, et al. “Superfluorescent Scintillation from Coupled Perovskite
    Quantum Dots.” <i>ArXiv</i>, 2412.21101, doi:<a href="https://doi.org/10.48550/arXiv.2412.21101">10.48550/arXiv.2412.21101</a>.
  short: S. Katznelson, S. Levy, A. Gorlach, N. Regev, M. Birk, C. Mechel, O. Tziperman,
    R. Schuetz, R. Strassberg, G. Dosovitsky, C. Roques-Carmes, Y. Bekenstein, I.
    Kaminer, ArXiv (n.d.).
date_created: 2026-04-09T09:10:41Z
date_published: 2024-12-30T00:00:00Z
date_updated: 2026-04-13T09:48:01Z
day: '30'
doi: 10.48550/arXiv.2412.21101
extern: '1'
external_id:
  arxiv:
  - '2412.21101'
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: ' https://doi.org/10.48550/arXiv.2412.21101'
month: '12'
oa: 1
oa_version: Preprint
publication: arXiv
publication_status: submitted
scopus_import: '1'
status: public
title: Superfluorescent scintillation from coupled perovskite quantum dots
type: preprint
user_id: 2DF688A6-F248-11E8-B48F-1D18A9856A87
year: '2024'
...
