Entanglement Structures in Quantum Field Theories: Negativity Cores and Bound Entanglement in the Vacuum
Natalie Klco, D. H. Beck, and Martin J. Savage

TL;DR
This paper investigates the structure of vacuum entanglement in quantum field theories, revealing a core-halo structure with accessible and bound entanglement, and discusses implications for quantum simulations of gauge theories.
Contribution
It introduces a detailed analysis of entanglement structures in quantum field vacua, identifying core pairs and bound halo entanglement, with implications for quantum information processing.
Findings
Vacuum entanglement can be locally transformed into core pairs.
Accessible entanglement exhibits exponential hierarchy.
Bound halo entanglement mirrors accessible entanglement but is inaccessible.
Abstract
The many-body entanglement between two finite (size-) disjoint vacuum regions of non-interacting lattice scalar field theory in one spatial dimension -- a Gaussian continuous variable system -- is locally transformed into a tensor-product "core" of entangled pairs. Accessible entanglement within these core pairs exhibits an exponential hierarchy, and as such identifies the structure of dominant region modes from which vacuum entanglement could be extracted into a spatially separated pair of quantum detectors. Beyond the core, remaining modes of the "halo" are determined to be AB-separable in isolation, as well as separable from the core. However, state preparation protocols that distribute entanglement in the form of core pairs are found to require additional entanglement in the halo that is…
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Taxonomy
TopicsCold Atom Physics and Bose-Einstein Condensates · Physics of Superconductivity and Magnetism · Quantum and electron transport phenomena
