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Entanglement harvesting between two inertial Unruh-DeWitt detectors from non-vacuum quantum fluctuations

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arxiv 2205.08505 v2 pith:S7C5K4VQ submitted 2022-05-17 gr-qc hep-thquant-ph

classification gr-qchep-thquant-ph
keywords entanglementharvestingdetectorsfluctuationsquantumbackgrounddifferentfield
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abstract

Entanglement harvesting from the quantum field is a well-known fact that, in recent times, is being rigorously investigated further in flat and different curved backgrounds. The usually understood formulation studies the possibility of two uncorrelated Unruh-DeWitt detectors getting entangled over time due to the effects of quantum vacuum fluctuations. Our current work presents a thorough formulation to realize the entanglement harvesting from non-vacuum background fluctuations. In particular, we further consider single excitation field states and a pair of inertial detectors, respectively, in $(1+1)$ and $(1+3)$ dimensions for this investigation. Our main observation asserts that entanglement harvesting is suppressed compared to the vacuum fluctuations in this situation. Our other observations confirm a non-zero individual detector transition probability in this background and vanishing entanglement harvesting for parallel co-moving detectors. We look into the characteristics of the harvested entanglement and discuss its dependence on different system parameters.

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  1. Can spacetime fluctuations generate entanglement between co-moving accelerated detectors?

    gr-qc 2025-04 conditional novelty 6.0 of 10

    Two uniformly accelerated Unruh-DeWitt detectors in nested Rindler frames harvest shift-independent entanglement from the Rindler vacuum whenever their trajectories are separated by any nonzero amount.

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