Targeted Polariton Flow Through Tailored Photonic Defects

Elena Rozas, Yannik Brune, Ken West, Kirk W. Baldwin, Loren N. Pfeiffer, Jonathan Beaumariage, Hassan Alnatah, David W. Snoke, Marc Aßmann
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Abstract

In non-Hermitian open quantum systems, such as polariton condensates, local tailoring of gains and losses opens up an interesting possibility to realize functional optical elements. Here, we demonstrate that deliberately introducing losses via a photonic defect, realized by reducing the quality factor of a DBR mirror locally within an ultrahigh-quality microcavity, may be utilized to create directed polariton currents towards the defect. We discuss the role of polariton-polariton interactions in the process and how to tailor the effective decay time of a polariton condensate via coupling to the defect. Our results highlight the far-reaching potential of non-Hermitian physics in polaritonics.
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通过定制光子缺陷的定向极化子流
在极化子凝聚体等非赫米提开放量子系统中,增益和损耗的局部调整为实现功能性光学元件提供了一种有趣的可能性。在这里,我们证明了通过光子缺陷故意引入损耗,通过在超高质量微腔中局部降低 DBR 镜的品质因数来实现,可以用来产生指向缺陷的定向极化子电流。我们讨论了极化子-极化子相互作用在这一过程中的作用,以及如何通过与缺陷的耦合来调整极化子凝聚态的有效衰减时间。我们的研究结果凸显了非赫米提物理学在极化中的深远潜力。
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