Measurement-device-independent quantum key distribution of multiple degrees of freedom of a single photon
Measurement-device-independent quantum key distribution (MDI-QKD) provides us a powerful approach to resist all attacks at detection side. Besides the unconditional security, people also seek for high key generation rate, but MDI-QKD has relatively low key generation rate. In this paper, we provide...
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Veröffentlicht in: | Frontiers of physics 2021-02, Vol.16 (1), p.11501, Article 11501 |
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creator | Yan, Yu-Fei Zhou, Lan Zhong, Wei Sheng, Yu-Bo |
description | Measurement-device-independent quantum key distribution (MDI-QKD) provides us a powerful approach to resist all attacks at detection side. Besides the unconditional security, people also seek for high key generation rate, but MDI-QKD has relatively low key generation rate. In this paper, we provide an efficient approach to increase the key generation rate of MDI-QKD by adopting multiple degrees of freedom (DOFs) of single photons to generate keys. Compared with other high-dimension MDI-QKD protocols encoding in one DOF, our protocol is more flexible, for our protocol generating keys in independent subsystems and the detection failure or error in a DOF not affecting the information encoding in other DOFs. Based on above features, our MDI-QKD protocol may have potential application in future quantum communication field. |
doi_str_mv | 10.1007/s11467-020-1005-1 |
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Phys</stitle><date>2021-02-01</date><risdate>2021</risdate><volume>16</volume><issue>1</issue><spage>11501</spage><pages>11501-</pages><artnum>11501</artnum><issn>2095-0462</issn><eissn>2095-0470</eissn><abstract>Measurement-device-independent quantum key distribution (MDI-QKD) provides us a powerful approach to resist all attacks at detection side. Besides the unconditional security, people also seek for high key generation rate, but MDI-QKD has relatively low key generation rate. In this paper, we provide an efficient approach to increase the key generation rate of MDI-QKD by adopting multiple degrees of freedom (DOFs) of single photons to generate keys. Compared with other high-dimension MDI-QKD protocols encoding in one DOF, our protocol is more flexible, for our protocol generating keys in independent subsystems and the detection failure or error in a DOF not affecting the information encoding in other DOFs. Based on above features, our MDI-QKD protocol may have potential application in future quantum communication field.</abstract><cop>Beijing</cop><pub>Higher Education Press</pub><doi>10.1007/s11467-020-1005-1</doi></addata></record> |
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subjects | Astronomy Astrophysics and Cosmology Atomic Coding Communication Condensed Matter Physics Degrees of freedom Error detection key generation rate longitudinal-momentum measurement-device-independent quantum key distribution Molecular Optical and Plasma Physics Particle and Nuclear Physics Photons Physics Physics and Astronomy polarization Protocol Quantum cryptography Research Article Subsystems |
title | Measurement-device-independent quantum key distribution of multiple degrees of freedom of a single photon |
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