论文标题
同心极性冷凝物中圆电流的稳态振荡
Steady state oscillations of circular currents in concentric polariton condensates
论文作者
论文摘要
同心环激子极化子在非共振激光泵下凝结在环形诱捕电势支撑物的持续圆形电流中。捕获势是由在半导体微腔中蚀刻的圆柱微柱形成的,该微柱具有嵌入式量子孔和泵点下的光学激发激子的排斥云。电势的对称性通过其泵诱导的成分操纵而受到外部控制。在手稿中,我们证明了具有预定涡度的同心环极性电流状态的激发,我们使用带球参考波的干涉测量测量进行跟踪。我们还观察到观测过程中偏振子冷凝物在观察过程中动态改变其涡度,这会导致成对的叉状位错,这是在微柱中与方位角均匀的光发光分布共存的时间平均干扰图。
Concentric ring exciton polariton condensates emerging under non-resonant laser pump in an annular trapping potential support persistent circular currents of polaritons. The trapping potential is formed by a cylindrical micropillar etched in a semiconductor microcavity with embedded quantum wells and a repulsive cloud of optically excited excitons under the pump spot. The symmetry of the potential is subject to external control via manipulation by its pump-induced component. In the manuscript, we demonstrate excitation of concentric ring polariton current states with predetermined vorticity which we trace using interferometry measurements with a spherical reference wave. We also observe the polariton condensate dynamically changing its vorticity during observation, which results in pairs of fork-like dislocations on the time-averaged interferogram coexisting with azimuthally homogeneous photoluminescence distribution in the micropillar.