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Generating entanglement between two-dimensional cavities in uniform acceleration

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arxiv 1509.05931 v1 pith:W5APOVT2 submitted 2015-09-19 quant-ph gr-qc

classification quant-phgr-qc
keywords accelerationcavitiesentanglementcavitytwo-dimensionalabilityacceleratedaffected
verification ladder T0 review T1 audit T2 compute T3 formal
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Moving cavities promise to be a suitable system for relativistic quantum information processing. It has been shown that an inertial and a uniformly accelerated one-dimensional cavity can become entangled by letting an atom emit an excitation while it passes through the cavities, but the acceleration degrades the ability to generate entanglement. We show that in the two-dimensional case the entanglement generated is affected not only by the cavity's acceleration but also by its transverse dimension which plays the role of an effective mass.

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