Secure quantum network coding for controlled repeater networks

To realize efficient quantum communication based on quantum repeater, we propose a secure quantum network coding scheme for controlled repeater networks, which adds a controller as a trusted party and is able to control the process of EPR-pair distribution. As the key operations of quantum repeater,...

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Published in:Quantum information processing Vol. 15; no. 7; pp. 2937 - 2953
Main Authors: Shang, Tao, Li, Jiao, Liu, Jian-wei
Format: Journal Article
Language:English
Published: New York Springer US 01.07.2016
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ISSN:1570-0755, 1573-1332
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Abstract To realize efficient quantum communication based on quantum repeater, we propose a secure quantum network coding scheme for controlled repeater networks, which adds a controller as a trusted party and is able to control the process of EPR-pair distribution. As the key operations of quantum repeater, local operations and quantum communication are designed to adopt quantum one-time pad to enhance the function of identity authentication instead of local operations and classical communication. Scheme analysis shows that the proposed scheme can defend against active attacks for quantum communication and realize long-distance quantum communication with minimal resource consumption.
AbstractList To realize efficient quantum communication based on quantum repeater, we propose a secure quantum network coding scheme for controlled repeater networks, which adds a controller as a trusted party and is able to control the process of EPR-pair distribution. As the key operations of quantum repeater, local operations and quantum communication are designed to adopt quantum one-time pad to enhance the function of identity authentication instead of local operations and classical communication. Scheme analysis shows that the proposed scheme can defend against active attacks for quantum communication and realize long-distance quantum communication with minimal resource consumption.
Author Li, Jiao
Shang, Tao
Liu, Jian-wei
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  organization: School of Electronic and Information Engineering, Beihang University
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Cites_doi 10.1103/PhysRevA.59.169
10.1109/TIT.2010.2048442
10.1103/PhysRevA.76.040301
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10.1109/ISIT.2011.6033701
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Keywords Secure communication
Quantum network coding
Quantum one-time pad
Quantum repeater network
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SubjectTerms Data Structures and Information Theory
Mathematical Physics
Physics
Physics and Astronomy
Quantum Computing
Quantum Information Technology
Quantum Physics
Spintronics
Title Secure quantum network coding for controlled repeater networks
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