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Kinematic entanglement degradation of fermionic cavity modes

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arxiv 1110.6756 v2 pith:V3KU36JD submitted 2011-10-31 quant-ph gr-qc

classification quant-phgr-qc
keywords cavitycorrelationsmodessegmentsaccelerateddegradationdurationsentanglement
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We analyse the entanglement and the non-locality of a (1+1)-dimensional massless Dirac field confined to a cavity on a worldtube that consists of inertial and uniformly accelerated segments, for small accelerations but arbitrarily long travel times. The correlations between the accelerated field modes and the modes in an inertial reference cavity are periodic in the durations of the individual trajectory segments, and degradation of the correlations can be entirely avoided by fine-tuning the individual or relative durations of the segments. Analytic results for selected trajectories are presented. Differences from the corresponding bosonic correlations are identified and extensions to massive fermions are discussed.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Enhancement and Suppression of Decay Rates in an Accelerated Fermionic Cavity Coupled to a Massive Field

    gr-qc 2025-10 reject novelty 6.0 of 10

    For a uniformly accelerated fermionic cavity coupled to a light massive field, the predicted decay-rate ratio is Γ_acc/Γ_in = al/ln(1+al), a geometric enhancement of up to tens of percent; heavy fields instead give ex...

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