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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Atomic motion in magneto-optical double-well potentials: A testing ground for quantum chaos - art. no. 056119
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Atomic motion in magneto-optical double-well potentials: A testing ground for quantum chaos - art. no. 056119

机译:磁光双阱势能中的原子运动:量子混沌的试验场-艺术。没有。 056119

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摘要

We have identified ultracold atoms in magneto-optical double-well potentials as a very clean setting in which to study the quantum and classical dynamics of a nonlinear system with multiple degrees of freedom. In this system, entanglement at the quantum level and chaos at the classical level arise from nonseparable couplings between the atomic spin and its center of mass motion. The main features of the chaotic dynamics are analyzed using action-angle variables and Poincare surfaces of section. We show that for the initial state prepared in current experiments [D. J. Haycock et al., Phys. Rev. Lett. 85, 3365 (2000)], classical and quantum expectation values diverge after a finite time, and the observed experimental dynamics is consistent with quantum-mechanical predictions. Furthermore, the motion corresponds to tunneling through a dynamical potential barrier. The coupling between the spin and the motional subsystems, which are very different in nature from one another, leads to interesting questions regarding the transition from regular quantum dynamics to chaotic classical motion. [References: 41]
机译:我们已经确定了磁光双阱势能中的超冷原子是非常干净的环境,在其中研究具有多个自由度的非线性系统的量子和经典动力学。在该系统中,量子级的纠缠和经典级的混沌是由原子自旋及其质心之间不可分离的耦合引起的。使用作用角变量和截面的Poincare曲面分析了混沌动力学的主要特征。我们表明,对于当前实验中准备的初始状态[D. J.Haycock等,物理学。牧师85,3365(2000)],经典期望值和量子期望值在有限的时间后发生分歧,并且观察到的实验动力学与量子力学的预测是一致的。此外,该运动对应于穿过动态势垒的隧穿。自旋子系统和运动子系统之间的耦合在本质上彼此非常不同,这引发了有关从规则量子动力学到混沌经典运动过渡的有趣问题。 [参考:41]

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