Perfect Reconciliation in Quantum Key Distribution with Order-Two Frames

We present an error reconciliation method for Quantum Key Distribution (QKD) that corrects 100% of errors generated in regular binary frames transmitted over a noisy quantum channel regardless of the quantum channel error rate. In a previous investigation, we introduced a novel distillation QKD algo...

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Bibliographic Details
Main Authors: Luis Adrián Lizama-Pérez, José Mauricio López-Romero
Format: Article
Language:English
Published: MDPI AG 2021-09-01
Series:Symmetry
Subjects:
QKD
Online Access:https://www.mdpi.com/2073-8994/13/9/1672
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spelling doaj-37095bfd931b4eca818a63b8f93b6b242021-09-26T01:31:21ZengMDPI AGSymmetry2073-89942021-09-01131672167210.3390/sym13091672Perfect Reconciliation in Quantum Key Distribution with Order-Two FramesLuis Adrián Lizama-Pérez0José Mauricio López-Romero1Dirección de Investigación, Innovación y Posgrado, Universidad Politécnica de Pachuca, Ex-Hacienda de Santa Bárbara, Zempoala 43830, MexicoCinvestav Querétaro, Libramiento Norponiente 2000, Real de Juriquilla, Santiago de Querétaro 76230, MexicoWe present an error reconciliation method for Quantum Key Distribution (QKD) that corrects 100% of errors generated in regular binary frames transmitted over a noisy quantum channel regardless of the quantum channel error rate. In a previous investigation, we introduced a novel distillation QKD algorithm whose secret key rate descends linearly with respect to the channel error rate. Now, as the main achievement of this work, we demonstrate an improved algorithm capable of retaining almost all the secret information enclosed in the regular binary frames. Remarkably, this technique increases quadratically the secret key rate as a function of the double matching detection events and doubly quadratically in the number of the quantum pulses. Furthermore, this reconciliation method opens up the opportunity to use less attenuated quantum pulses, would allow greater QKD distances at drastically increased secret key rate. Since our method can be implemented as a software update, we hope that quantum key distribution technology would be fast deployed over global data networks in the quantum era.https://www.mdpi.com/2073-8994/13/9/1672QKDdistillationreconciliation
collection DOAJ
language English
format Article
sources DOAJ
author Luis Adrián Lizama-Pérez
José Mauricio López-Romero
spellingShingle Luis Adrián Lizama-Pérez
José Mauricio López-Romero
Perfect Reconciliation in Quantum Key Distribution with Order-Two Frames
Symmetry
QKD
distillation
reconciliation
author_facet Luis Adrián Lizama-Pérez
José Mauricio López-Romero
author_sort Luis Adrián Lizama-Pérez
title Perfect Reconciliation in Quantum Key Distribution with Order-Two Frames
title_short Perfect Reconciliation in Quantum Key Distribution with Order-Two Frames
title_full Perfect Reconciliation in Quantum Key Distribution with Order-Two Frames
title_fullStr Perfect Reconciliation in Quantum Key Distribution with Order-Two Frames
title_full_unstemmed Perfect Reconciliation in Quantum Key Distribution with Order-Two Frames
title_sort perfect reconciliation in quantum key distribution with order-two frames
publisher MDPI AG
series Symmetry
issn 2073-8994
publishDate 2021-09-01
description We present an error reconciliation method for Quantum Key Distribution (QKD) that corrects 100% of errors generated in regular binary frames transmitted over a noisy quantum channel regardless of the quantum channel error rate. In a previous investigation, we introduced a novel distillation QKD algorithm whose secret key rate descends linearly with respect to the channel error rate. Now, as the main achievement of this work, we demonstrate an improved algorithm capable of retaining almost all the secret information enclosed in the regular binary frames. Remarkably, this technique increases quadratically the secret key rate as a function of the double matching detection events and doubly quadratically in the number of the quantum pulses. Furthermore, this reconciliation method opens up the opportunity to use less attenuated quantum pulses, would allow greater QKD distances at drastically increased secret key rate. Since our method can be implemented as a software update, we hope that quantum key distribution technology would be fast deployed over global data networks in the quantum era.
topic QKD
distillation
reconciliation
url https://www.mdpi.com/2073-8994/13/9/1672
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