Continuous-variable quantum key distribution over multispan links employing phase-insensitive and phase-sensitive amplifiers

Fuente: arXiv
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Autori principali: Notarnicola, Michele N., Cieciuch, Filip, Jarzyna, Marcin
Natura: Preprint
Pubblicazione: 2023
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author Notarnicola, Michele N.
Cieciuch, Filip
Jarzyna, Marcin
author_facet Notarnicola, Michele N.
Cieciuch, Filip
Jarzyna, Marcin
contents Transmission losses through optical fibers are one of the main obstacles preventing both long-distance quantum communications and continuous-variable quantum key distribution. Optical amplification provides a tool to obtain, at least partially, signal restoration. In this work, we address a key distribution protocol over a multispan link employing either phase-insensitive or phase-sensitive amplifiers, considering Gaussian modulation of coherent states followed by homodyne detection at the receiver's side. We perform the security analysis under both unconditional and composable security frameworks by assuming in the latter case only a single span of the whole communication link to be untrusted. We compare the resulting key generation rate for both kinds of amplified links with the no-amplifier protocol, identifying the enhancement introduced by optical amplification.
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id arxiv_https___arxiv_org_abs_2309_08041
institution arXiv
publishDate 2023
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spellingShingle Continuous-variable quantum key distribution over multispan links employing phase-insensitive and phase-sensitive amplifiers
Notarnicola, Michele N.
Cieciuch, Filip
Jarzyna, Marcin
Quantum Physics
Transmission losses through optical fibers are one of the main obstacles preventing both long-distance quantum communications and continuous-variable quantum key distribution. Optical amplification provides a tool to obtain, at least partially, signal restoration. In this work, we address a key distribution protocol over a multispan link employing either phase-insensitive or phase-sensitive amplifiers, considering Gaussian modulation of coherent states followed by homodyne detection at the receiver's side. We perform the security analysis under both unconditional and composable security frameworks by assuming in the latter case only a single span of the whole communication link to be untrusted. We compare the resulting key generation rate for both kinds of amplified links with the no-amplifier protocol, identifying the enhancement introduced by optical amplification.
title Continuous-variable quantum key distribution over multispan links employing phase-insensitive and phase-sensitive amplifiers
topic Quantum Physics
url https://arxiv.org/abs/2309.08041