Generalized uncertainty principle and its implications on geometric phases in quantum mechanics

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Abstract

We study the implications of the generalized uncertainty principle (GUP) with a minimal measurable length on some quantum mechanical interferometry phenomena, such as the Aharonov–Bohm, Aharonov–Casher, COW and Sagnac effects. By resorting to a modified Schrödinger equation, we evaluate the lowest-order correction to the phase shift of the interference pattern within two different GUP frameworks: the first one is characterized by the redefinition of the physical momentum only, and the other is a Lorentz covariant GUP which also predicts non-commutativity of spacetime. The obtained results allow us to fix upper bounds on the GUP deformation parameters which may be tested through future high-precision interferometry experiments.

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Luciano, G. G., & Petruzziello, L. (2021). Generalized uncertainty principle and its implications on geometric phases in quantum mechanics. European Physical Journal Plus, 136(2). https://doi.org/10.1140/epjp/s13360-021-01161-0

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