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Entanglement Generation by Electric Field Background

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arxiv 1410.3130 v1 pith:S6BYIH5R submitted 2014-10-12 quant-ph hep-th

classification quant-phhep-th
keywords electricentanglementfieldpairparticlesproductionschwingerbackground
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The quantum vacuum is unstable under the influence of an external electric field and decays into pairs of charged particles, a process which is known as the Schwinger pair production. We propose and demonstrate that this electric field can generate entanglement. Using the Schwinger pair production for constant and pulsed electric fields, we study entanglement for scalar particles with zero spins and Dirac fermions. One can observe the variation of the entanglement produced for bosonic and fermionic modes with respect to different parameters.

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  1. State of a particle pair produced by the Schwinger effect is not necessarily a maximally entangled Bell state

    hep-th 2019-08 conditional novelty 6.0 of 10

    Schwinger pair spin correlations depend on the momentum direction: transverse momentum produces spin states that are not maximally entangled Bell states.

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