论文标题

合成磁场中的光 - 物质相互作用:Landau-Photon Pallitons

Light-matter interactions in synthetic magnetic fields: Landau-photon polaritons

论文作者

De Bernardis, Daniele, Cian, Ze-Pei, Carusotto, Iacopo, Hafezi, Mohammad, Rabl, Peter

论文摘要

我们在存在空间均匀的合成磁场的情况下研究光子系统中的光 - 物质相互作用。具体而言,我们考虑位于晶格的大块区域中的一个或多个两级发射器,为了增加磁场,光子模式从延长的平面波变为循环的Landau水平。这种变化对所得的发射极领域动力学产生了巨大影响,后者本质上变成了非马克维亚和手性,导致形成强耦合的Landau-Photon Polaritons。这些准颗粒的特殊动力学和光谱特性可以用光学和微波域中的最新光子晶格探测,并可能找到各种应用强烈相互作用拓扑模型的量子模拟的应用。

We study light-matter interactions in two dimensional photonic systems in the presence of a spatially homogeneous synthetic magnetic field for light. Specifically, we consider one or more two-level emitters located in the bulk region of the lattice, where for increasing magnetic field the photonic modes change from extended plane waves to circulating Landau levels. This change has a drastic effect on the resulting emitter-field dynamics, which becomes intrinsically non-Markovian and chiral, leading to the formation of strongly coupled Landau-photon polaritons. The peculiar dynamical and spectral properties of these quasi-particles can be probed with state-of-the-art photonic lattices in the optical and the microwave domain and may find various applications for the quantum simulation of strongly interacting topological models.

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