Concerning the direction of the Aharonov-Bohm deflection

Timothy H Boyer
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引用次数: 1

Abstract

Abstract The interaction of a solenoid with a passing charged particle can be treated within classical or quantum physics. If charged particles pass around both sides of a solenoid, there is an experimentally-observed Aharonov–Bohm deflection of the double-slit particle interference pattern between charges passing on opposite sides. Such a deflection can be obtained by a classical force calculation. Although the magnitude of the angular deflection agrees between the classical force calculation and the quantum topological theory, the direction of the predicted deflection is opposite. Here we point out the simple basis for the direction of the deflection based upon classical electrodynamics and based upon quantum theory. Also, we mention some deflection analogs, both the electrostatic deflection of the particle interference pattern and the optical analog of the classical calculation. The deflection direction involves an experimental question which is addressed rarely if ever. In the deflection direction, there is a direct experimental confrontation connected with the long-standing controversy involving the interpretation of the Aharonov–Bohm phase shift.
关于Aharonov-Bohm偏转的方向
螺线管与带电粒子的相互作用可以用经典物理或量子物理来处理。如果带电粒子在螺线管的两侧通过,则实验观察到在通过相反两侧的电荷之间存在双缝粒子干涉图案的Aharonov-Bohm偏转。这种挠度可以通过经典的力计算得到。虽然角偏转的大小在经典力计算和量子拓扑理论之间是一致的,但预测偏转的方向是相反的。本文从经典电动力学和量子理论出发,给出了偏转方向的简单依据。此外,我们还提到了一些类似的偏转,包括粒子干涉图样的静电偏转和经典计算的光学模拟。偏转方向涉及到一个很少涉及的实验问题。在偏转方向上,有一个直接的实验对抗,与长期存在的争议有关,涉及到对Aharonov-Bohm相移的解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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