Entanglement generation using single-photon pulse reflection in realistic networks

Fuente: arXiv
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Autori principali: Omlor, Ferdinand, Tissot, Benedikt, Burkard, Guido
Natura: Preprint
Pubblicazione: 2024
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author Omlor, Ferdinand
Tissot, Benedikt
Burkard, Guido
author_facet Omlor, Ferdinand
Tissot, Benedikt
Burkard, Guido
contents A general entanglement generation protocol between remote stationary qubits using single-photon reflection in a photonic network is explored theoretically. The nodes of the network consist of single qubits that are typically represented by the spin of a color center, each localized in a separate optical cavity and linked to other nodes via photonic links such as optical fibers. We derive a model applicable to a wide range of parameters and scenarios to describe the nodes and the local spin-photon interaction accounting for the pulsed (finite bandwidth) nature of flying single photons while optimizing the rate and fidelity. We investigate entanglement generation between remote qubits and tailor protocols to a variety of physical implementations with different properties. Of particular interest is the regime of weak coupling and low cooperativity between spin and cavity which is relevant in the cases of the nitrogen and silicon vacancy centers in diamond. We also take into account the variability of the properties between realistic (stationary) nodes.
format Preprint
id arxiv_https___arxiv_org_abs_2410_21555
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Entanglement generation using single-photon pulse reflection in realistic networks
Omlor, Ferdinand
Tissot, Benedikt
Burkard, Guido
Quantum Physics
Mesoscale and Nanoscale Physics
A general entanglement generation protocol between remote stationary qubits using single-photon reflection in a photonic network is explored theoretically. The nodes of the network consist of single qubits that are typically represented by the spin of a color center, each localized in a separate optical cavity and linked to other nodes via photonic links such as optical fibers. We derive a model applicable to a wide range of parameters and scenarios to describe the nodes and the local spin-photon interaction accounting for the pulsed (finite bandwidth) nature of flying single photons while optimizing the rate and fidelity. We investigate entanglement generation between remote qubits and tailor protocols to a variety of physical implementations with different properties. Of particular interest is the regime of weak coupling and low cooperativity between spin and cavity which is relevant in the cases of the nitrogen and silicon vacancy centers in diamond. We also take into account the variability of the properties between realistic (stationary) nodes.
title Entanglement generation using single-photon pulse reflection in realistic networks
topic Quantum Physics
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2410.21555