Please use this identifier to cite or link to this item: http://dspace.iitrpr.ac.in:8080/xmlui/handle/123456789/1763
Title: Background magnetic field and quantum correlations in the schwinger effect
Authors: Bhattacharya, S.
Chakrabortty, S.
Hoshino, H.
Kaushal, S.
Keywords: Schwinger effect
Background electromagnetic fields
Complex scalar field
Entanglement entropy
Quantum mutual information
Logarithmic negativity
Issue Date: 8-Jun-2021
Abstract: In this work we consider two complex scalar fields distinguished by their masses coupled to constant background electric and magnetic fields in the (3 + 1)-dimensional Minkowski spacetime and subsequently investigate a few measures quantifying the quantum correlations between the created particleantiparticle Schwinger pairs. Since the background magnetic field itself cannot cause the decay of the Minkowski vacuum, our chief motivation here is to investigate the interplay between the effects due to the electric and magnetic fields. We start by computing the entanglement entropy for the vacuum state of a single scalar field. Second, we consider some maximally entangled states for the two-scalar field system and compute the logarithmic negativity and the mutual information. Qualitative differences of these results pertaining to the charge content of the states are emphasised. Based upon these results, we suggest some possible effects of a background magnetic field on the degradation of entanglement between states in an accelerated frame, for charged quantum fields.
URI: http://localhost:8080/xmlui/handle/123456789/1763
Appears in Collections:Year-2020

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