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Aspects of nonlocality from a quantum trajectory perspective: A WKB approach to Bohmian mechanics

机译:从量子轨迹的角度来看非局部性的方面:WKB方法对玻姆力学的影响

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摘要

Nonlocality is a property of paramount importance both conceptually and computationally exhibited by quantum systems, which has no classical counterpart. Conceptually, it is important because it implies that the evolving system has information on what happens at any space point and time. Computationally, because such a knowledge makes any calculation intractable as the number of degrees of freedom involved increases beyond a few of them. Bohmian mechanics, with its trajectory-based formalism in real configuration space, can help to better understand nonlocality. A detailed analysis of how nonlocal information is transmitted to quantum trajectories in simple systems (free particle and harmonic oscillator) turns out to be very interesting when compared to analogous systems in classical mechanics. © 2007 Elsevier B.V. All rights reserved.
机译:非局域性是量子系统在概念和计算上都表现出的最重要的特性,而量子系统没有经典的对应。从概念上讲,这一点很重要,因为它暗示着不断发展的系统具有有关在任何空间点和时间发生的情况的信息。从计算上讲,因为随着所涉及的自由度数量的增加,这种知识使任何计算都变得困难。鲍姆力学在实际配置空间中具有基于轨迹的形式主义,可以帮助更好地理解非局部性。与经典力学中的类似系统相比,对非本地信息如何在简单系统(自由粒子和谐波振荡器)中传输至量子轨迹的详细分析非常有趣。 ©2007 Elsevier B.V.保留所有权利。

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