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Hauptverfasser: Arreyes, Facundo, Escudero, Federico, Ardenghi, Juan Sebastián, Juan, Alfredo
Format: Preprint
Veröffentlicht: 2024
Schlagworte:
Online-Zugang:https://arxiv.org/abs/2406.03624
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author Arreyes, Facundo
Escudero, Federico
Ardenghi, Juan Sebastián
Juan, Alfredo
author_facet Arreyes, Facundo
Escudero, Federico
Ardenghi, Juan Sebastián
Juan, Alfredo
contents We study the entanglement harvesting between two identical buckled honeycomb lattices placed inside a planar microcavity. By applying time dependent perturbation theory, we obtain quantum correlations between both layers induced by the cavity field. Considering the vacuum state as the initial state of the cavity field and tracing out the time-evolved degrees of freedom, we analyze the entanglement formation using the concurrence measure. We show that the concurrence depends on the virtual photon exchanged and the positions of the layer through the interlayer photon propagator. Furthermore, we find that the formation of entanglement between equal energy electrons tends to be enhanced when they move in perpendicular directions. Our results indicate that a buckled honeycomb structure and a large spin-orbit interaction favor the entanglement harvesting.
format Preprint
id arxiv_https___arxiv_org_abs_2406_03624
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Entanglement harvesting in buckled honeycomb lattices by vacuum fluctuations in a microcavity
Arreyes, Facundo
Escudero, Federico
Ardenghi, Juan Sebastián
Juan, Alfredo
Mesoscale and Nanoscale Physics
Quantum Physics
We study the entanglement harvesting between two identical buckled honeycomb lattices placed inside a planar microcavity. By applying time dependent perturbation theory, we obtain quantum correlations between both layers induced by the cavity field. Considering the vacuum state as the initial state of the cavity field and tracing out the time-evolved degrees of freedom, we analyze the entanglement formation using the concurrence measure. We show that the concurrence depends on the virtual photon exchanged and the positions of the layer through the interlayer photon propagator. Furthermore, we find that the formation of entanglement between equal energy electrons tends to be enhanced when they move in perpendicular directions. Our results indicate that a buckled honeycomb structure and a large spin-orbit interaction favor the entanglement harvesting.
title Entanglement harvesting in buckled honeycomb lattices by vacuum fluctuations in a microcavity
topic Mesoscale and Nanoscale Physics
Quantum Physics
url https://arxiv.org/abs/2406.03624