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arxiv: 1303.4286 · v4 · pith:ZW6EUAORnew · submitted 2013-03-18 · ❄️ cond-mat.quant-gas

Non-Abelian Gauge Fields in Photonic Cavities and Photonic Superfluids

classification ❄️ cond-mat.quant-gas
keywords fieldcouplinggaugeleadsmonopolarphotonicregimespin-orbit
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We show that the interplay between the structure anisotropy and the energy splitting between the TE and TM modes of a microcavity leads to the appearance of a gauge field for a propagating polariton condensate. This field is analog with a spin-orbit coupling and the field texture can be tuned by rotating the sample and ranges continuously from a Rashba to a monopolar field. In the linear regime, the monopolar field leads to a remarkable focusing effect. In the interacting regime, the effective spin-orbit coupling induces a breakdown of superfluidity. The spatially homogeneous flows become unstable and dynamically evolve into textured ground states such as stripes and domain walls.

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