非共振泵浦下激子-极化子凝聚体的阻力

Pei-Song He, Zhaoxin Liang
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引用次数: 2

摘要

半导体微腔中的激子-极化子凝聚构成了一种新型的非平衡超流体。在最近的一项实验中[P.]斯特帕诺夫,{\it等人},Nat. common。[\bf 10}, 1038(2019)],研究了共振泵浦下极化子凝聚体中集体激励的色散关系,重点研究了长寿命激子库在决定超流动性中的作用。受这一实验进展的启发,我们通过计算在极化子凝聚体中运动的经典杂质所受的阻力,研究了非共振泵浦下激子-极化子凝聚体的超流动性。对于在间隙相中制备的非共振泵浦极化子凝聚体,由于储层的模式,当杂质的速度较小时,阻力会很大。此外,随着速度的增加,阻力可以减小。对于不是很大的速度,如果将凝结水调得更耗散,阻力就会增强。当凝析液靠近间隙相与无间隙相之间的过渡点时,阻力与平衡超流体相似。我们目前的工作揭示了储层模态对非共振抽运极化子凝聚体超流体性质的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Drag force of an exciton-polariton condensate under nonresonant pumping
Exciton-polariton condensate in semiconductor microcavities constitute a novel kind of non-equilibrium superfluid. In a recent experiment [P. Stepanov, {\it et. al.,} Nat. Commun. {\bf 10}, 1038 (2019)], the dispersion relation of collective excitations in a polariton condensate under the resonant pumping has been investigated with the emphasis on the role of reservoir of long-lived excitons in determining the superfluidity. Inspired by such an experimental advance, we study the superfluidity of a exciton-polaritonn condensate under non-resonant pumping by calculating the drag force exerted on a classical impurity moving in a polariton condensate. For a non-resonant pumped polariton condensate prepared in the gapped phase, due to the reservoir's modes, the drag force can be large when the velocity of the impurity is small. Besides, as the velocity increases, the drag force can decrease. For not very large velocity, the drag force is enhanced if the condensate is tuned to be more dissipative. When the condensate is close to the transition point between the gapped phase and the gapless one, the drag force is similar to that of the equilibrium superfluid. Our present work reveals the effects of the reservoir's modes on the superfluidity properties of a polariton condensate with the non-resonant pumping.
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