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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Elementary Aharonov-Bohm system in three space dimensions: Quantum attraction with no classical force - art. no. 012109
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Elementary Aharonov-Bohm system in three space dimensions: Quantum attraction with no classical force - art. no. 012109

机译:在三个空间维度上的基本Aharonov-Bohm系统:无经典力的量子吸引-艺术。没有。 012109

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摘要

As a consequence of the Aharonov-Bohm effect, there is a quantum-induced attraction between a charged particle and a rigid, impenetrable hoop made from an arbitrarily thin tube containing a superconductor quantum of magnetic flux. This is remarkable because in classical physics there is no force between the two objects, and quantum-mechanical effects (associated with uncertainty-principle energy) generally are repulsive rather than attractive. For an incident spinless charged particle in a P wave (in a configuration with total angular momentum zero) we verify a resonance just above threshold using the Kohn variational principle in its S-matrix form. Even if optimistic choices of parameters describing a model system with these properties were feasible, the temperature required to observe the resonance would be far lower than has yet been attained in the laboratory. [References: 11]
机译:Aharonov-Bohm效应的结果是,在带电粒子和由包含磁通量超导体的任意细管制成的刚性,不可穿透的箍之间存在量子诱导的吸引。这是惊人的,因为在古典物理学中,两个物体之间没有力,并且量子力学效应(与不确定性原理能量相关)通常是排斥的而不是吸引人的。对于P波中入射的无旋带电粒子(在总角动量为零的配置中),我们使用S矩阵形式的Kohn变分原理验证了刚好高于阈值的共振。即使描述这些特性的模型系统的参数的乐观选择是可行的,但观察共振所需的温度仍将远低于实验室所达到的温度。 [参考:11]

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