Quantum Secure Communication Network Protocol with Entangled Photons for Mobile Communications

In this paper, we propose a communication protocol called Controlled Bidirectional Quantum Secret Direct Communication (CBQSDC) for mobile networks. In mobile networks, telecom companies assist the agent ensuring both sides could receive the other’s secret messages in the transmission by quantum the...

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Published inMobile networks and applications Vol. 19; no. 1; pp. 121 - 130
Main Authors Chou, Yao-Hsin, Zeng, Guo-Jyun, Lin, Fang-Jhu, Chen, Chi-Yuan, Chao, Han-Chieh
Format Journal Article
LanguageEnglish
Published New York Springer US 01.02.2014
Springer Nature B.V
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Abstract In this paper, we propose a communication protocol called Controlled Bidirectional Quantum Secret Direct Communication (CBQSDC) for mobile networks. In mobile networks, telecom companies assist the agent ensuring both sides could receive the other’s secret messages in the transmission by quantum theory simultaneously. This protocol is based on n-particle GHZ states (Greenberger-Horne-Zeilinger-states) which are transformed to Einstein-Podolsky-Rosen (EPR) pairs by entanglement swapping. GHZ states are used to carry both sides’ messages and entanglement swapping could reduce the number of transmission, so we could decrease the probability of eavesdropping. If any eavesdropper tries to steal dealer’s messages, the lawful participants will perceive it and abort their transmission.
AbstractList Issue Title: Advances on Smart Object Management and Security Mechanisms for FMC In this paper, we propose a communication protocol called Controlled Bidirectional Quantum Secret Direct Communication (CBQSDC) for mobile networks. In mobile networks, telecom companies assist the agent ensuring both sides could receive the other's secret messages in the transmission by quantum theory simultaneously. This protocol is based on n-particle GHZ states (Greenberger-Horne-Zeilinger-states) which are transformed to Einstein-Podolsky-Rosen (EPR) pairs by entanglement swapping. GHZ states are used to carry both sides' messages and entanglement swapping could reduce the number of transmission, so we could decrease the probability of eavesdropping. If any eavesdropper tries to steal dealer's messages, the lawful participants will perceive it and abort their transmission.[PUBLICATION ABSTRACT]
In this paper, we propose a communication protocol called Controlled Bidirectional Quantum Secret Direct Communication (CBQSDC) for mobile networks. In mobile networks, telecom companies assist the agent ensuring both sides could receive the other’s secret messages in the transmission by quantum theory simultaneously. This protocol is based on n-particle GHZ states (Greenberger-Horne-Zeilinger-states) which are transformed to Einstein-Podolsky-Rosen (EPR) pairs by entanglement swapping. GHZ states are used to carry both sides’ messages and entanglement swapping could reduce the number of transmission, so we could decrease the probability of eavesdropping. If any eavesdropper tries to steal dealer’s messages, the lawful participants will perceive it and abort their transmission.
Author Zeng, Guo-Jyun
Chao, Han-Chieh
Chen, Chi-Yuan
Lin, Fang-Jhu
Chou, Yao-Hsin
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  surname: Chou
  fullname: Chou, Yao-Hsin
  organization: Department of computer science and information engineering, National Chi-Nan University
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  givenname: Guo-Jyun
  surname: Zeng
  fullname: Zeng, Guo-Jyun
  organization: Department of computer science and information engineering, National Chi-Nan University
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  givenname: Fang-Jhu
  surname: Lin
  fullname: Lin, Fang-Jhu
  organization: Department of computer science and information engineering, National Chi-Nan University
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  givenname: Chi-Yuan
  surname: Chen
  fullname: Chen, Chi-Yuan
  organization: Department of Electrical Engineering, National Dong Hwa University
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  givenname: Han-Chieh
  surname: Chao
  fullname: Chao, Han-Chieh
  email: hcc@niu.edu.tw
  organization: Department of Electrical Engineering, National Dong Hwa University, Department of Electronic Engineering and Institute of Computer Science & Information Engineering, National Ilan University
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Issue 1
Keywords Bidirectional quantum secure direct communication
Quantum secure direct communication
Quantum wireless network
Quantum secure network
Language English
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PublicationTitle Mobile networks and applications
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Snippet In this paper, we propose a communication protocol called Controlled Bidirectional Quantum Secret Direct Communication (CBQSDC) for mobile networks. In mobile...
Issue Title: Advances on Smart Object Management and Security Mechanisms for FMC In this paper, we propose a communication protocol called Controlled...
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StartPage 121
SubjectTerms Communication
Communication networks
Communications Engineering
Communications networks
Computer Communication Networks
Computer engineering
Computer science
Cryptography
Eavesdropping
Electrical Engineering
Engineering
Entanglement
IT in Business
Messages
Network security
Network topologies
Networks
Photons
Protocol
Quantum computing
Quantum physics
Quantum theory
Studies
Telecommunications
Wireless networks
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Title Quantum Secure Communication Network Protocol with Entangled Photons for Mobile Communications
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