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A test of the equivalence principle(s) for quantum superpositions
Journal article   Peer reviewed

A test of the equivalence principle(s) for quantum superpositions

Patrick J. Orlando, Robert B. Mann, Kavan Modi and Felix A. Pollock
Classical and quantum gravity, Vol.33(19), p.19
06/10/2016

Abstract

Astronomy & Astrophysics Physical Sciences Physics Physics, Multidisciplinary Physics, Particles & Fields Quantum Science & Technology Science & Technology
We propose an experimental test of the quantum equivalence principle introduced by Zych and Brukner (arXiv: 1502.00971), which generalises the Einstein equivalence principle to superpositions of internal energy states. We consider a harmonically trapped spin-1/2 atom in the presence of both gravity and an external magnetic field and show that when the external magnetic field is suddenly switched off, various violations of the equivalence principle would manifest as otherwise forbidden transitions. Performing such an experiment would put bounds on the various phenomenological violating parameters. We further demonstrate that the classical weak equivalence principle can be tested by suddenly putting the apparatus into free fall, effectively 'switching off' gravity.

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