Multiparty weighted threshold quantum secret sharing based on the Chinese remainder theorem to share quantum information

Abstract Secret sharing is a widely-used security protocol and cryptographic primitive in which all people cooperate to restore encrypted information. The characteristics of a quantum field guarantee the security of information; therefore, many researchers are interested in quantum cryptography and...

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Main Authors: Yao-Hsin Chou, Guo-Jyun Zeng, Xing-Yu Chen, Shu-Yu Kuo
Format: Article
Language:English
Published: Nature Publishing Group 2021-03-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-021-85703-7
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spelling doaj-0319ebe18d784e16a7ac26b303682d102021-03-21T12:32:23ZengNature Publishing GroupScientific Reports2045-23222021-03-0111111010.1038/s41598-021-85703-7Multiparty weighted threshold quantum secret sharing based on the Chinese remainder theorem to share quantum informationYao-Hsin Chou0Guo-Jyun Zeng1Xing-Yu Chen2Shu-Yu Kuo3Department of Computer Science and Information Engineering, National Chi Nan UniversityDepartment of Computer Science and Information Engineering, National Chi Nan UniversityDepartment of Computer Science and Information Engineering, National Chi Nan UniversityDepartment of Computer Science and Engineering, National Chung Hsing UniversityAbstract Secret sharing is a widely-used security protocol and cryptographic primitive in which all people cooperate to restore encrypted information. The characteristics of a quantum field guarantee the security of information; therefore, many researchers are interested in quantum cryptography and quantum secret sharing (QSS) is an important research topic. However, most traditional QSS methods are complex and difficult to implement. In addition, most traditional QSS schemes share classical information, not quantum information which makes them inefficient to transfer and share information. In a weighted threshold QSS method, each participant has each own weight, but assigning weights usually costs multiple quantum states. Quantum state consumption will therefore increase with the weight. It is inefficient and difficult, and therefore not able to successfully build a suitable agreement. The proposed method is the first attempt to build multiparty weighted threshold QSS method using single quantum particles combine with the Chinese remainder theorem (CRT) and phase shift operation. The proposed scheme allows each participant has its own weight and the dealer can encode a quantum state with the phase shift operation. The dividing and recovery characteristics of CRT offer a simple approach to distribute partial keys. The reversibility of phase shift operation can encode and decode the secret. The proposed weighted threshold QSS scheme presents the security analysis of external attacks and internal attacks. Furthermore, the efficiency analysis shows that our method is more efficient, flexible, and simpler to implement than traditional methods.https://doi.org/10.1038/s41598-021-85703-7
collection DOAJ
language English
format Article
sources DOAJ
author Yao-Hsin Chou
Guo-Jyun Zeng
Xing-Yu Chen
Shu-Yu Kuo
spellingShingle Yao-Hsin Chou
Guo-Jyun Zeng
Xing-Yu Chen
Shu-Yu Kuo
Multiparty weighted threshold quantum secret sharing based on the Chinese remainder theorem to share quantum information
Scientific Reports
author_facet Yao-Hsin Chou
Guo-Jyun Zeng
Xing-Yu Chen
Shu-Yu Kuo
author_sort Yao-Hsin Chou
title Multiparty weighted threshold quantum secret sharing based on the Chinese remainder theorem to share quantum information
title_short Multiparty weighted threshold quantum secret sharing based on the Chinese remainder theorem to share quantum information
title_full Multiparty weighted threshold quantum secret sharing based on the Chinese remainder theorem to share quantum information
title_fullStr Multiparty weighted threshold quantum secret sharing based on the Chinese remainder theorem to share quantum information
title_full_unstemmed Multiparty weighted threshold quantum secret sharing based on the Chinese remainder theorem to share quantum information
title_sort multiparty weighted threshold quantum secret sharing based on the chinese remainder theorem to share quantum information
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-03-01
description Abstract Secret sharing is a widely-used security protocol and cryptographic primitive in which all people cooperate to restore encrypted information. The characteristics of a quantum field guarantee the security of information; therefore, many researchers are interested in quantum cryptography and quantum secret sharing (QSS) is an important research topic. However, most traditional QSS methods are complex and difficult to implement. In addition, most traditional QSS schemes share classical information, not quantum information which makes them inefficient to transfer and share information. In a weighted threshold QSS method, each participant has each own weight, but assigning weights usually costs multiple quantum states. Quantum state consumption will therefore increase with the weight. It is inefficient and difficult, and therefore not able to successfully build a suitable agreement. The proposed method is the first attempt to build multiparty weighted threshold QSS method using single quantum particles combine with the Chinese remainder theorem (CRT) and phase shift operation. The proposed scheme allows each participant has its own weight and the dealer can encode a quantum state with the phase shift operation. The dividing and recovery characteristics of CRT offer a simple approach to distribute partial keys. The reversibility of phase shift operation can encode and decode the secret. The proposed weighted threshold QSS scheme presents the security analysis of external attacks and internal attacks. Furthermore, the efficiency analysis shows that our method is more efficient, flexible, and simpler to implement than traditional methods.
url https://doi.org/10.1038/s41598-021-85703-7
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