Purcell-enhanced x-ray scintillation
Kurman Y, Lahav N, Schuetz R, Shultzman A, Roques-Carmes C, Lifshits A, Zaken S, Lenkiewicz T, Strassberg R, Be’er O, Bekenstein Y, Kaminer I. 2024. Purcell-enhanced x-ray scintillation. Science Advances. 10(44).
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Author
Kurman, Yaniv;
Lahav, Neta;
Schuetz, Roman;
Shultzman, Avner;
Roques-Carmes, CharlesISTA;
Lifshits, Alon;
Zaken, Segev;
Lenkiewicz, Tom;
Strassberg, Rotem;
Be’er, Orr;
Bekenstein, Yehonadav;
Kaminer, Ido
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All
Abstract
Scintillation materials convert high-energy radiation to optical light through a complex multistage process. The last stage of the process is spontaneous light emission, which usually governs and limits the scintillator emission rate and light yield. For decades, scintillator research focused on developing faster-emitting materials or external photonic coatings for improving light yields. Here, we experimentally demonstrate a fundamentally different approach: enhancing the scintillation rate and yield via the Purcell effect, utilizing optical environment engineering to boost spontaneous emission. This enhancement is universally applicable to any scintillating material and dopant when the material’s nanoscale geometry is engineered. We design a thin multilayer nanophotonic scintillator, demonstrating Purcell-enhanced scintillation with 50% enhancement in emission rate and 80% enhancement in light yield. The emission is robust to fabrication disorder, further highlighting its potential for x-ray applications. Our results show prospects for bridging nanophotonics and scintillator science toward reduced radiation dosage and increased resolution for high-energy particle detection.
Publishing Year
Date Published
2024-11-01
Journal Title
Science Advances
Publisher
American Association for the Advancement of Science
Volume
10
Issue
44
eISSN
IST-REx-ID
Cite this
Kurman Y, Lahav N, Schuetz R, et al. Purcell-enhanced x-ray scintillation. Science Advances. 2024;10(44). doi:10.1126/sciadv.adq6325
Kurman, Y., Lahav, N., Schuetz, R., Shultzman, A., Roques-Carmes, C., Lifshits, A., … Kaminer, I. (2024). Purcell-enhanced x-ray scintillation. Science Advances. American Association for the Advancement of Science. https://doi.org/10.1126/sciadv.adq6325
Kurman, Yaniv, Neta Lahav, Roman Schuetz, Avner Shultzman, Charles Roques-Carmes, Alon Lifshits, Segev Zaken, et al. “Purcell-Enhanced x-Ray Scintillation.” Science Advances. American Association for the Advancement of Science, 2024. https://doi.org/10.1126/sciadv.adq6325.
Y. Kurman et al., “Purcell-enhanced x-ray scintillation,” Science Advances, vol. 10, no. 44. American Association for the Advancement of Science, 2024.
Kurman Y, Lahav N, Schuetz R, Shultzman A, Roques-Carmes C, Lifshits A, Zaken S, Lenkiewicz T, Strassberg R, Be’er O, Bekenstein Y, Kaminer I. 2024. Purcell-enhanced x-ray scintillation. Science Advances. 10(44).
Kurman, Yaniv, et al. “Purcell-Enhanced x-Ray Scintillation.” Science Advances, vol. 10, no. 44, American Association for the Advancement of Science, 2024, doi:10.1126/sciadv.adq6325.
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PMID: 39485836
PubMed | Europe PMC
arXiv 2302.01300
