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Magnetic Exciton-Polariton with Strongly Coupled Atomic and Photonic Anisotropies

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arxiv 2306.11265 v2 pith:NHOLGF6B submitted 2023-06-20 physics.optics cond-mat.other

classification physics.opticscond-mat.other
keywords photonicanisotropicanisotropiescavitystronglysystematomiccoupled
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Anisotropy plays a key role in science and engineering. However, the interplay between the material and engineered photonic anisotropies has hardly been explored due to the vastly different length scales. Here we demonstrate a matter-light hybrid system, exciton-polaritons in a 2D antiferromagnet, CrSBr, coupled with an anisotropic photonic crystal (PC) cavity, where the spin, atomic lattice, and photonic lattices anisotropies are strongly correlated, giving rise to unusual properties of the hybrid system and new possibilities of tuning. We show exceptionally strong coupling between engineered anisotropic optical modes and anisotropic excitons in CrSBr, which is stable against excitation densities a few orders of magnitude higher than polaritons in isotropic materials. Moreover, the polaritons feature a highly anisotropic polarization tunable by tens of degrees by controlling the matter-light coupling via, for instance, spatial alignment between the material and photonic lattices, magnetic field, temperature, cavity detuning and cavity quality-factors. The demonstrated system provides a prototype where atomic- and photonic-scale orders strongly couple, opening opportunities of photonic engineering of quantum materials and novel photonic devices, such as compact, on-chip polarized light source and polariton laser.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Tunable Nanophotonic Devices and Cavities based on a Two-Dimensional Magnet

    physics.optics 2025-07 conditional novelty 6.0 of 10

    Photonic crystal slabs made from the 2D magnet CrSBr support high-Q guided resonances that can be magnetically switched between ordinary and hyperbolic polariton modes.

  2. Excitons and trions in CrSBr bilayers

    cond-mat.mes-hall 2024-11 conditional novelty 5.0 of 10

    In bilayer CrSBr, intralayer excitons bind at about 200 meV and direct trions at 18-20 meV, while the interlayer trion with electrons on opposite layers is essentially unbound at realistic spacings.

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