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One-dimensional macro-scale matter wave dynamics potentially embedded in the Lorentz trajectory

Published online by Cambridge University Press:  18 October 2013

RAM K. VARMA*
Affiliation:
Physical Research Laboratory, Navrangpura, Ahmedabad 380009, India ([email protected])

Abstract

We point the rather unusual existence of a potential embedding in the Lorentz trajectory – charged particle trajectory in a magnetic field – of a one-dimensional matter wave dynamics on the macro-scale as demonstrated through one-dimensional matter wave interference effects on the macro-scale, as well as the observation of a curl-free vector potential in one dimension, also on the macro-scale. Such an embedding is a manifestation of the generation of the quantum modulation of the de Broglie wave of the particle along the magnetic field, arising concomitantly, with a scattering-induced transition across Landau levels in consequence of quantum entanglement between the parallel and perpendicular degrees of freedom.

Type
Papers
Copyright
Copyright © Cambridge University Press 2013 

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References

Varma, R. K. 2001 Phys. Rev. E 64, 036608 (1–10); Erratum 2002 Phys. Rev. E 65, 019904.Google Scholar
Varma, R. K. 2010 Pramana J. Phys. 74, 491511.CrossRefGoogle Scholar
Varma, R. K. 2012a Eur. Phys. J. D 66, 39 (1–12).Google Scholar
Varma, R. K. 2012b Phys. Scr. 86, 045009 (1–10).CrossRefGoogle Scholar
Varma, R. K. 2013 J. Plasma Phys. 79, 197213.CrossRefGoogle Scholar
Varma, R. K. and Banerjee, S. B. 2007 Phys. Scr. 75, 1928.CrossRefGoogle Scholar
Varma, R. K., Banerjee, S. B. and Ambastha, A. 2012 Eur. Phys. J. D 66, 38 (1–11).Google Scholar
Varma, R. K., Punithavelu, A. M. and Banerjee, S. B. 2002 Phys. Rev. E 65, 026503 (1–9).Google Scholar