Enhancing of Self-Referenced Continuous-Variable Quantum Key Distribution with Virtual Photon Subtraction

The scheme of the self-referenced continuous-variable quantum key distribution (SR CV-QKD) has been experimentally demonstrated. However, because of the finite dynamics of Alice’s amplitude modulator, there will be an extra excess noise that is proportional to the amplitude of the referenc...

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Main Authors: Hai Zhong, Yijun Wang, Xudong Wang, Qin Liao, Xiaodong Wu, Ying Guo
Format: Article
Language:English
Published: MDPI AG 2018-08-01
Series:Entropy
Subjects:
Online Access:http://www.mdpi.com/1099-4300/20/8/578
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spelling doaj-36d04c55b4434e0a99e59b73e932ecef2020-11-24T23:14:16ZengMDPI AGEntropy1099-43002018-08-0120857810.3390/e20080578e20080578Enhancing of Self-Referenced Continuous-Variable Quantum Key Distribution with Virtual Photon SubtractionHai Zhong0Yijun Wang1Xudong Wang2Qin Liao3Xiaodong Wu4Ying Guo5School of Information Science and Engineering, Central South University, Changsha 410083, ChinaSchool of Information Science and Engineering, Central South University, Changsha 410083, ChinaSchool of Information Science and Engineering, Central South University, Changsha 410083, ChinaSchool of Information Science and Engineering, Central South University, Changsha 410083, ChinaSchool of Information Science and Engineering, Central South University, Changsha 410083, ChinaSchool of Information Science and Engineering, Central South University, Changsha 410083, ChinaThe scheme of the self-referenced continuous-variable quantum key distribution (SR CV-QKD) has been experimentally demonstrated. However, because of the finite dynamics of Alice’s amplitude modulator, there will be an extra excess noise that is proportional to the amplitude of the reference pulse, while the maximal transmission distance of this scheme is positively correlated with the amplitude of the reference pulse. Therefore, there is a trade-off between the maximal transmission distance and the amplitude of the reference pulse. In this paper, we propose the scheme of SR CV-QKD with virtual photon subtraction, which not only has no need for the use of a high intensity reference pulse to improve the maximal transmission distance, but also has no demand of adding complex physical operations to the original self-referenced scheme. Compared to the original scheme, our simulation results show that a considerable extension of the maximal transmission distance can be obtained when using a weak reference pulse, especially for one-photon subtraction. We also find that our scheme is sensible with the detector’s electronic noise at reception. A longer maximal transmission distance can be achieved for lower electronic noise. Moreover, our scheme has a better toleration of excess noise compared to the original self-referenced scheme, which implies the advantage of using virtual photon subtraction to increase the maximal tolerable excess noise for distant users. These results suggest that our scheme can make the SR CV-QKD from the laboratory possible for practical metropolitan area application.http://www.mdpi.com/1099-4300/20/8/578quantum cryptographycontinuous-variable quantum key distributionphoton subtraction
collection DOAJ
language English
format Article
sources DOAJ
author Hai Zhong
Yijun Wang
Xudong Wang
Qin Liao
Xiaodong Wu
Ying Guo
spellingShingle Hai Zhong
Yijun Wang
Xudong Wang
Qin Liao
Xiaodong Wu
Ying Guo
Enhancing of Self-Referenced Continuous-Variable Quantum Key Distribution with Virtual Photon Subtraction
Entropy
quantum cryptography
continuous-variable quantum key distribution
photon subtraction
author_facet Hai Zhong
Yijun Wang
Xudong Wang
Qin Liao
Xiaodong Wu
Ying Guo
author_sort Hai Zhong
title Enhancing of Self-Referenced Continuous-Variable Quantum Key Distribution with Virtual Photon Subtraction
title_short Enhancing of Self-Referenced Continuous-Variable Quantum Key Distribution with Virtual Photon Subtraction
title_full Enhancing of Self-Referenced Continuous-Variable Quantum Key Distribution with Virtual Photon Subtraction
title_fullStr Enhancing of Self-Referenced Continuous-Variable Quantum Key Distribution with Virtual Photon Subtraction
title_full_unstemmed Enhancing of Self-Referenced Continuous-Variable Quantum Key Distribution with Virtual Photon Subtraction
title_sort enhancing of self-referenced continuous-variable quantum key distribution with virtual photon subtraction
publisher MDPI AG
series Entropy
issn 1099-4300
publishDate 2018-08-01
description The scheme of the self-referenced continuous-variable quantum key distribution (SR CV-QKD) has been experimentally demonstrated. However, because of the finite dynamics of Alice’s amplitude modulator, there will be an extra excess noise that is proportional to the amplitude of the reference pulse, while the maximal transmission distance of this scheme is positively correlated with the amplitude of the reference pulse. Therefore, there is a trade-off between the maximal transmission distance and the amplitude of the reference pulse. In this paper, we propose the scheme of SR CV-QKD with virtual photon subtraction, which not only has no need for the use of a high intensity reference pulse to improve the maximal transmission distance, but also has no demand of adding complex physical operations to the original self-referenced scheme. Compared to the original scheme, our simulation results show that a considerable extension of the maximal transmission distance can be obtained when using a weak reference pulse, especially for one-photon subtraction. We also find that our scheme is sensible with the detector’s electronic noise at reception. A longer maximal transmission distance can be achieved for lower electronic noise. Moreover, our scheme has a better toleration of excess noise compared to the original self-referenced scheme, which implies the advantage of using virtual photon subtraction to increase the maximal tolerable excess noise for distant users. These results suggest that our scheme can make the SR CV-QKD from the laboratory possible for practical metropolitan area application.
topic quantum cryptography
continuous-variable quantum key distribution
photon subtraction
url http://www.mdpi.com/1099-4300/20/8/578
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AT qinliao enhancingofselfreferencedcontinuousvariablequantumkeydistributionwithvirtualphotonsubtraction
AT xiaodongwu enhancingofselfreferencedcontinuousvariablequantumkeydistributionwithvirtualphotonsubtraction
AT yingguo enhancingofselfreferencedcontinuousvariablequantumkeydistributionwithvirtualphotonsubtraction
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