Non-Abelian lattice gauge fields in photonic synthetic frequency dimensions
Cheng D, Wang K, Roques-Carmes C, Lustig E, Long OY, Wang H, Fan S. 2025. Non-Abelian lattice gauge fields in photonic synthetic frequency dimensions. Nature. 637(8044), 52–56.
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Author
Cheng, Dali;
Wang, Kai;
Roques-Carmes, CharlesISTA;
Lustig, Eran;
Long, Olivia Y.;
Wang, Heming;
Fan, Shanhui
Abstract
Non-Abelian gauge fields provide a conceptual framework to describe particles
having spins, underlying many phenomena in electrodynamics, condensed-matter
physics and particle physics. Lattice models of non-Abelian gauge fields allow us
to understand their physical implications in extended systems. The theoretical
importance of non-Abelian lattice gauge fields motivates their experimental synthesis
and explorations. Photons are fundamental particles for which artificial gauge fields
can be synthesized, yet the demonstration of non-Abelian lattice gauge fields for
photons has not been achieved. Here we demonstrate SU(2) lattice gauge fields for
photons in the synthetic frequency dimensions, a playground to study lattice
physics in a scalable and programmable way. In our lattice model, we theoretically
observe that homogeneous non-Abelian lattice gauge potentials induce Dirac cones
at time-reversal-invariant momenta in the Brillouin zone. We experimentally confirm
the presence of non-Abelian lattice gauge fields by two signatures: linear band
crossings at the Dirac cones, and the associated direction reversal of eigenstate
trajectories. We further demonstrate a non-Abelian scalar lattice gauge potential that
lifts the degeneracies of the Dirac cones. Our results highlight the implications of
non-Abelian lattice gauge fields in topological physics, and provide a starting point
for demonstrations of emerging non-Abelian physics in the photonic synthetic
dimensions. Our results may also benefit photonic technologies by providing controls
of photon spins and pseudo-spins in topologically non-trivial ways.
Publishing Year
Date Published
2025-01-02
Journal Title
Nature
Publisher
Springer Nature
Volume
637
Issue
8044
Page
52-56
ISSN
eISSN
IST-REx-ID
Cite this
Cheng D, Wang K, Roques-Carmes C, et al. Non-Abelian lattice gauge fields in photonic synthetic frequency dimensions. Nature. 2025;637(8044):52-56. doi:10.1038/s41586-024-08259-2
Cheng, D., Wang, K., Roques-Carmes, C., Lustig, E., Long, O. Y., Wang, H., & Fan, S. (2025). Non-Abelian lattice gauge fields in photonic synthetic frequency dimensions. Nature. Springer Nature. https://doi.org/10.1038/s41586-024-08259-2
Cheng, Dali, Kai Wang, Charles Roques-Carmes, Eran Lustig, Olivia Y. Long, Heming Wang, and Shanhui Fan. “Non-Abelian Lattice Gauge Fields in Photonic Synthetic Frequency Dimensions.” Nature. Springer Nature, 2025. https://doi.org/10.1038/s41586-024-08259-2.
D. Cheng et al., “Non-Abelian lattice gauge fields in photonic synthetic frequency dimensions,” Nature, vol. 637, no. 8044. Springer Nature, pp. 52–56, 2025.
Cheng D, Wang K, Roques-Carmes C, Lustig E, Long OY, Wang H, Fan S. 2025. Non-Abelian lattice gauge fields in photonic synthetic frequency dimensions. Nature. 637(8044), 52–56.
Cheng, Dali, et al. “Non-Abelian Lattice Gauge Fields in Photonic Synthetic Frequency Dimensions.” Nature, vol. 637, no. 8044, Springer Nature, 2025, pp. 52–56, doi:10.1038/s41586-024-08259-2.
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PMID: 39743600
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arXiv 2406.00321
