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Quantum Communication Networks and Trust Management: A Survey 被引量:5
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作者 Shibin Zhang Yan Chang +5 位作者 Lili Yan zhiwei sheng Fan Yang Guihua Han Yuanyuan Huang Jinyue Xia 《Computers, Materials & Continua》 SCIE EI 2019年第9期1145-1174,共30页
This paper summarizes the state of art in quantum communication networks and trust management in recent years.As in the classical networks,trust management is the premise and foundation of quantum secure communication... This paper summarizes the state of art in quantum communication networks and trust management in recent years.As in the classical networks,trust management is the premise and foundation of quantum secure communication and cannot simply be attributed to security issues,therefore the basic and importance of trust management in quantum communication networks should be taken more seriously.Compared with other theories and techniques in quantum communication,the trust of quantum communication and trust management model in quantum communication network environment is still in its initial stage.In this paper,the core technologies of establishing secure and reliable quantum communication networks are categorized and summarized,and the trends of each direction in trust management of quantum communication network are discussed in depth. 展开更多
关键词 Quantum communication quantum communication network TRUST trust management trust management model
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Measure-Resend Semi-Quantum Private Comparison Scheme Using GHZ Class States 被引量:1
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作者 Lili Yan Yan Chang +3 位作者 Shibin Zhang Qirun Wang zhiwei sheng Yuhua Sun 《Computers, Materials & Continua》 SCIE EI 2019年第8期877-887,共11页
Quantum private comparison is an important topic in quantum cryptography.Recently,the idea of semi-quantumness has been often used in designing private comparison protocol,which allows some of the participants to rema... Quantum private comparison is an important topic in quantum cryptography.Recently,the idea of semi-quantumness has been often used in designing private comparison protocol,which allows some of the participants to remain classical.In this paper,we propose a semi quantum private comparison scheme based on Greenberge-Horne-Zeilinger(GHZ)class states,which allows two classical participants to compare the equality of their private secret with the help of a quantum third party(server).In the proposed protocol,server is semi-honest who will follow the protocol honestly,but he may try to learn additional information from the protocol execution.The classical participants’activities are restricted to either measuring a quantum state or reflecting it in the classical basis{0,1}.In addition,security and efficiency of the proposed schemes have been discussed. 展开更多
关键词 Quantum private comparison semi-quantum protocol semi-honest third party GHZ class states
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Quantum Secure Direct Communication Protocol with Mutual Authentication Based on Single Photons and Bell States
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作者 Lili Yan Shibin Zhang +2 位作者 Yan Chang Zhibin Sun zhiwei sheng 《Computers, Materials & Continua》 SCIE EI 2020年第6期1297-1307,共11页
Quantum secure direct communication(QSDC)can transmit secret messages directly from one user to another without first establishing a shared secret key,which is different from quantum key distribution.In this paper,we ... Quantum secure direct communication(QSDC)can transmit secret messages directly from one user to another without first establishing a shared secret key,which is different from quantum key distribution.In this paper,we propose a novel quantum secure direct communication protocol based on signal photons and Bell states.Before the execution of the proposed protocol,two participants Alice and Bob exchange their corresponding identity IDA and IDB through quantum key distribution and keep them secret,respectively.Then the message sender,Alice,encodes each secret message bit into two single photons(|01>or|10>)or a Bell state(1|φ^(+)>=1/√2(|0>|-|1>1>)),and composes an ordered secret message sequence.To insure the security of communication,Alice also prepares the decoy photons and inserts them into secret message sequence on the basis of the values of IDA and IDB.By the secret identity IDA and IDB,both sides of the communication can check eavesdropping and identify each other.The proposed protocol not only completes secure direct communication,but also realizes the mutual authentication.The security analysis of the proposed protocol is presented in the paper.The analysis results show that this protocol is secure against some common attacks,and no secret message leaks even if the messages are broken.Compared with the two-way QSDC protocols,the presented protocol is a one-way quantum communication protocol which has the immunity to Trojan horse attack.Furthermore,our proposed protocol can be realized without quantum memory. 展开更多
关键词 Quantum secure direct communication mutual authentication bell states single photons
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