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Vortex dynamics of rotating Bose-Einstein condensate of microcavity polaritons

机译:微腔极化子的玻色-爱因斯坦旋转冷凝物的涡旋动力学

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摘要

In this work we perform a numerical study of a rotating, harmonically trapped, Bose-Einstein condensate of microcavity polaritons. An efficient numerical method (toolbox) to solve the complex Gross-Pitaevskii equation is developed. Using this method, we investigate how the behavior of the number of vortices formed inside the condensate changes as the various system parameters are varied. In contrast to the atomic condensates, we show, there exists an (experimentally realizable) range of parameter values in which all the vortices can be made to vanish even when there is a high rotation. We further explore how this region can be tuned through other free parameters and also discuss how this study can help to realize the synthetic magnetic field for polaritons and hence paving the way for the realization of the quantum Hall physics and many other exotic phenomena.
机译:在这项工作中,我们对微腔极化子的旋转,谐波俘获的玻色-爱因斯坦凝聚物进行了数值研究。开发了一种有效的数值方法(工具箱)来求解复杂的Gross-Pitaevskii方程。使用这种方法,我们研究了随着各种系统参数的变化,凝结水内部形成的漩涡数量的行为如何变化。与原子冷凝物相反,我们表明,存在一个(可通过实验实现的)参数值范围,其中即使在高旋转下也可以使所有涡旋消失。我们将进一步探讨如何通过其他自由参数来调节该区域,并讨论该研究如何帮助实现极化子的合成磁场,从而为实现量子霍尔物理和许多其他奇异现象铺平道路。

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