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Matter wave coupling of spatially separated and unequally pumped polariton condensates

机译:空间分离和未泵送的极性凝固物的物质波耦合

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摘要

Spatial quantum coherence between two separated driven-dissipative polariton condensates created nonresonantly and with a different occupation is studied. We identify the regions where the condensates remain coherent with the phase difference continuously changing with the pumping imbalance and the regions where each condensate acquires its own chemical potential with phase differences exhibiting time-dependent oscillations. We show that in the mutual coherence limit the coupling consists of two competing contributions: a symmetric Heisenberg exchange and the Dzyloshinskii-Moriya asymmetric interactions that enable a continuous tuning of the phase relation across the dyad and derive analytic expressions for these types of interactions. The introduction of nonequal pumping increases the complexity of the type of problems that can be solved by polariton condensates arranged in a graph configuration. If equally pumped polaritons condensates arrange their phases to solve the constrained quadratic minimisation problem with a real symmetric matrix, the nonequally pumped condensates solve that problem for a general Hermitian matrix.
机译:研究了两种分离的驱动 - 耗散的极性凝聚物之间的空间量子相干凝聚物非统一和不同职业。我们识别冷凝物与泵送不平衡和每个冷凝物从表现出时间依赖性振荡的相差的区域差异的相位差保持相干的区域。我们认为,在相互相干限制中,耦合由两个竞争贡献组成:对称的海森伯格交换和Dzyloshinskii-moriya的不对称相互作用,使得能够连续调整在Dyad上的相位关系和用于这些类型的相互作用的分析表达式。非泵送的引入增加了通过布置在图形配置中布置的Parariton冷凝器的问题类型的复杂性。如果等于泵浦的极性子凝结凝结,则将它们的相排列以解决与真实对称矩阵的受约束的二次最小化问题,但泵浦的凝结物不解决普通神经矩阵的这种问题。

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