论文标题
在“旋转水桶”实验的量子涡流中
Quantum Vortex Formation in the "Rotating Bucket'' Experiment with Polariton Condensates
论文作者
论文摘要
液体氦气和超声稀释气体的经典``旋转水桶''实验中的定量涡旋的出现为不同超流体的基本和比较研究提供了手段。在这里,我们意识到了基于半导体微腔中的激子 - 波利顿玻色子凝结物的光捕获量子流体的``旋转桶''实验。我们利用两个频率稳定的单模激光器的跳动音符来生成一个不对称的时间周期性旋转,非共振式激发曲线,该曲线均通过与背景exciton储层的相互作用进行注入并激发冷凝物。泵诱导的冷凝物的外旋流导致共旋转定量涡流的出现。我们研究了旋转频率依赖性,并揭示了有利于定量涡流形成的搅拌频率(从1到4 GHz)的范围。我们使用广义的pitaevskii方程来描述现象学。我们的结果使北极星超流体与其他超流体以及对结构非线性光的确定性全光控制进行研究。
The appearance of quantised vortices in the classical ``rotating bucket'' experiments of liquid helium and ultracold dilute gases provides the means for fundamental and comparative studies of different superfluids. Here, we realize the ``rotating bucket'' experiment for optically trapped quantum fluid of light based on exciton-polariton Bose-Einstein condensate in semiconductor microcavity. We utilise the beating note of two frequency-stabilized single-mode lasers to generate an asymmetric time-periodic rotating, non-resonant excitation profile that both injects and stirs the condensate through its interaction with a background exciton reservoir. The pump-induced external rotation of the condensate results in the appearance of a co-rotating quantised vortex. We investigate the rotation-frequency dependence and reveal the range of stirring frequencies (from 1 to 4 GHz) which favors quantised vortex formation. We describe the phenomenology using the generalised Gross-Pitaevskii equation. Our results enable the study of polariton superfluidity on a par with other superfluids, as well as deterministic, all-optical control over structured nonlinear light.