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Detection of acceleration radiation in a Bose-Einstein condensate

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arxiv 0709.2425 v2 pith:Q2BKDT2F submitted 2007-09-15 quant-ph

Detection of acceleration radiation in a Bose-Einstein condensate

classification quant-ph
keywords accelerationbose-einsteincondensateradiationunruhbogoliubovdetectingeffect
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We propose and study methods for detecting the Unruh effect in a Bose-Einstein condensate. The Bogoliubov vacuum of a Bose-Einstein condensate is used here to simulate a scalar field-theory, and accelerated atom dots or optical lattices as means for detecting phonon radiation due to acceleration effects. We study Unruh's effect for linear acceleration and circular acceleration. In particular, we study the dispersive effects of the Bogoliubov spectrum on the ideal case of exact thermalization. Our results suggest that Unruh's acceleration radiation can be tested using current accessible experimental methods.

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Cited by 1 Pith paper

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  1. Cavity-controlled Inhibition of Decoherence in Accelerated Quantum Detectors

    gr-qc 2026-04 unverdicted novelty 6.0

    Moderate acceleration of an Unruh-DeWitt detector in a cylindrical cavity suppresses decoherence more effectively than the inertial case by smearing resonant modes and replacing off-resonant decay with oscillations.