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Photonic Berry curvature in double liquid crystal microcavities with broken inversion symmetry
Autor
Data publikacji
2021
Abstrakt (EN)
We investigate a photonic device consisting of two coupled optical cavities possessing Rashba-Dresselhaus spin-orbit coupling, TE-TM splitting, and linear polarization splitting that opens a tunable energy gap at the diabolic points of the photon dispersion; giving rise to an actively addressable local Berry curvature. The proposed architecture stems from recent advancements in the design of artificial photonic gauge fields in liquid crystal cavities [K. Rechcińska et al., Science 366, 727 (2019)]. Our study opens perspectives for topological photonics, room-temperature spinoptronics, and studies on the quantum geometrical structure of photonic bands in extreme settings.
Dyscyplina PBN
nauki fizyczne
Czasopismo
Physical Review B
Tom
103
Zeszyt
8
ISSN
2469-9950
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