首页> 外文会议>7th Experimental Chaos Conference; Aug 26-29, 2002; San Diego, California >Quantum And Classical Dynamics Of Atoms In A Magneto-optical Lattice
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Quantum And Classical Dynamics Of Atoms In A Magneto-optical Lattice

机译:磁光格子中原子的量子和经典动力学

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The transport of ultra-cold atoms in magneto-optical potentials provides a clean setting in which to investigate the distinct predictions of classical versus quantum dynamics for a system with coupled degrees of freedom. In this system, entanglement at the quantum level and chaos at the classical level arise from the coupling between the atomic spin and its center-of-mass motion. Experiments, performed deep in the quantum regime, correspond to dynamic quantum tunneling. This nonclassical behavior is contrasted with the predictions for an initial phase space distribution produced in the experiment, but undergoing classical Hamiltonian flow. We study conditions under which the trapped atoms can be made to exhibit classical dynamics through the process of continuous measurement, which localizes the probability distribution to phase space trajectories, consistent with the uncertainty principle and quantum "back-action" noise. This method allows us to analytically and numerically identify the quantum-classical boundary.
机译:磁光势中超冷原子的输运提供了一个干净的设置,可以在其中研究具有耦合自由度的系统的经典动力学和量子动力学的不同预测。在该系统中,原子自旋与其质心运动之间的耦合产生了量子级的纠缠和经典级的混沌。在量子机制的深层进行的实验对应于动态量子隧穿。这种非经典的行为与实验中产生的但经历经典哈密顿流的初始相空间分布的预测相反。我们研究了通过连续测量过程使被俘获的原子表现出经典动力学的条件,该过程将概率分布定位在相空间轨迹上,这与不确定性原理和量子“反作用”噪声相一致。这种方法使我们能够分析和数字识别量子经典边界。

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