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Spontaneous Symmetry Breaking of Population in a Nonadiabatically Driven Atomic Trap: An Ising-Class Phase Transition

机译:非绝热驱动的原子阱中种群的自发对称性破坏:伊辛类相变。

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摘要

We have observed spontaneous symmetry breaking of the population of Brownian particles between two moving potentials in the spatiotemporally symmetric system. Cold atoms preferentially occupy one of the dynamic double-well potentials, produced in the parametrically driven dissipative magneto-optical trap far from equilibrium, above a critical number of atoms. We find that the population asymmetry, which may be interpreted as the biased Brownian motion, can be qualitatively described by the mean-field Ising-class phase transition. This in situ study may be useful for investigation of dynamic phase transition or temporal behavior of critical phenomena.
机译:我们已经观察到时空对称系统中两个运动势之间的布朗粒子群体的自发对称性破坏。冷原子优先占据动态双阱电势之一,该动态双阱电势是在临界数量以上的原子驱动的远离平衡的参量驱动的耗散磁光阱中产生的。我们发现,可以通过均值场伊辛类相变来定性地描述总体不对称性(可以解释为偏布朗运动)。该原位研究对于研究动态相变或关键现象的时间行为可能很有用。

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