An Elementary Aharonov-Bohm System in Three Space Dimensions: Quantum Attraction With No Classical Force
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 turned out to be feasible, the temperature required to observe the resonance would be far lower than has yet been attained in the laboratory.
引用
@article{arxiv.quant-ph/0301061,
title = {An Elementary Aharonov-Bohm System in Three Space Dimensions: Quantum Attraction With No Classical Force},
author = {Alfred Scharff Goldhaber and Ryan Requist},
journal= {arXiv preprint arXiv:quant-ph/0301061},
year = {2007}
}
备注
10 pages, 2 figures