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Interaction-induced hopping phase in driven-dissipative coupled photonic microcavities

机译:驱动耗散耦合光子微腔中相互作用诱导的跳跃相

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摘要

The Bose-Hubbard model (BHM) describes bosons hopping across sites and interacting on-site. Inspired by the success of BHM simulators with atoms in optical lattices, proposals for implementing the BHM with photons in coupled nonlinear cavities have recently emerged. Two coupled semiconductor microcavities constitute a model system where the hopping, interaction and decay of exciton polaritons—mixed light-matter quasiparticles—can be engineered in combination with site-selective coherent driving to implement the driven-dissipative two-site optical BHM. Here we explore the interplay of interference and nonlinearity in this system, in a regime where three distinct density profiles can be observed under identical driving conditions. We demonstrate how the phase acquired by polaritons hopping between cavities can be controlled through polariton-polariton interactions. Our results open new perspectives for synthesizing density-dependent gauge fields using polaritons in two-dimensional multicavity systems.
机译:Bose-Hubbard模型(BHM)描述了玻色子跨站点跳跃并在现场进行交互的情况。受到原子在光学晶格中的BHM仿真器的成功的启发,最近提出了在耦合的非线性腔中用光子实现BHM的提议。两个耦合的半导体微腔构成了一个模型系统,其中激子极化子(混合的光物质准粒子)的跳跃,相互作用和衰减可以与位点选择性相干驱动相结合,以实现被驱动的耗散两点光学BHM。在这里,我们研究了在相同驾驶条件下可以观察到三个不同密度分布的状态下,该系统中干扰与非线性的相互作用。我们演示了如何通过极化子-极化子相互作用来控制由极化子在腔之间跳跃所获得的相位。我们的结果为在二维多腔系统中使用极化子合成密度相关的规范场开辟了新的前景。

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