Entanglement manipulation through multicore fibres

Fuente: arXiv
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Auteurs principaux: Marconi, Carlo, Fanella, Elena, Bacco, Davide, Zavatta, Alessandro
Format: Preprint
Publié: 2024
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author Marconi, Carlo
Fanella, Elena
Bacco, Davide
Zavatta, Alessandro
author_facet Marconi, Carlo
Fanella, Elena
Bacco, Davide
Zavatta, Alessandro
contents Multicore fibres are recently gaining considerable attention in the context of quantum communication tasks, where their capability to transmit multiple quantum states along different cores of the same channel make them a promising candidate for the implementation of scalable quantum networks. Here, we show that multicore fibres can be effectively used not only for the scope of communication but also for the generation of entangled states. By exploiting the formalism of completely positive trace preserving maps, we describe the action of a multicore fibre as a quantum channel and propose a protocol to implement bound entangled states of two qudits. Notably, the presence of crosstalk among the cores of the fibre is fundamental for the generation of such states.
format Preprint
id arxiv_https___arxiv_org_abs_2407_04423
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Entanglement manipulation through multicore fibres
Marconi, Carlo
Fanella, Elena
Bacco, Davide
Zavatta, Alessandro
Quantum Physics
Multicore fibres are recently gaining considerable attention in the context of quantum communication tasks, where their capability to transmit multiple quantum states along different cores of the same channel make them a promising candidate for the implementation of scalable quantum networks. Here, we show that multicore fibres can be effectively used not only for the scope of communication but also for the generation of entangled states. By exploiting the formalism of completely positive trace preserving maps, we describe the action of a multicore fibre as a quantum channel and propose a protocol to implement bound entangled states of two qudits. Notably, the presence of crosstalk among the cores of the fibre is fundamental for the generation of such states.
title Entanglement manipulation through multicore fibres
topic Quantum Physics
url https://arxiv.org/abs/2407.04423