Stokes' theorem is investigated in the context of the time-dependent Aharonov-Bohm effect—the two-slit quantum interference experiment with a time varying solenoid between the slits. The time varying solenoid produces an electric field which leads to an additional phase shift which is found to exactly cancel the time-dependent part of the usual magnetic Aharonov-Bohm phase shift. This electric field arises from a combination of a non-single valued scalar potential and/or a 3-vector potential. The gauge transformation which leads to the scalar and 3-vector potentials for the electric field is non-single valued. This feature is connected with the non-simply connected topology of the Aharonov-Bohm set-up. The non-single valued nature of the gauge transformation function has interesting consequences for the 4-dimensional Stokes' theorem for the time-dependent Aharonov-Bohm effect. An experimental test of these conclusions is proposed.
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April 2014
Research Article|
April 01 2014
Stokes' theorem, gauge symmetry and the time-dependent Aharonov-Bohm effect
James Macdougall;
James Macdougall
a)
Department of Physics,
California State University Fresno
, Fresno, California 93740-8031, USA
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Douglas Singleton
Douglas Singleton
b)
Department of Physics,
California State University Fresno
, Fresno, California 93740-8031, USA
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a)
Electronic mail: jbm34@mail.fresnostate.edu
b)
Electronic mail: dougs@csufresno.edu
J. Math. Phys. 55, 042101 (2014)
Article history
Received:
December 13 2013
Accepted:
March 11 2014
Citation
James Macdougall, Douglas Singleton; Stokes' theorem, gauge symmetry and the time-dependent Aharonov-Bohm effect. J. Math. Phys. 1 April 2014; 55 (4): 042101. https://doi.org/10.1063/1.4869324
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