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广西大学物理科学与工程技术学院导师教师师资介绍简介-韦克金

本站小编 Free考研考试/2021-06-12

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广西南宁市大学东路100号 物理科学与工程技术学院
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硕士研究生导师
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物理科学与工程技术学院
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2019.12-至今 副教授 广西大学物理科学与工程技术学院2016.7-2019.12 助理教授 广西大学物理科学与工程技术学院2013.9-2016.6 博士 物理电子学 北京邮电大学2014.8-2015.9 博士 物理电子学 北京邮电大学&加拿大多伦多大学联合培养2011.9-2013.7 硕士 光学 北京邮电大学&中国科学院物理所联合培养2007.9-2011.7 学士 应用物理学 北京邮电大学
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1. 通信原理2. 光纤通信3. 量子信息与通信导论
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研究方向1)实际量子密钥分发系统安全性2)新型量子密钥分发系统实验设计3)量子通信复杂度4)量子密码学理论与实验研究
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主持科研项目1)基于不可信中继的量子密钥分发组网理论和技术,国家自然科学重点项目(子课题负责人), 2021.1-2025.122)新型量子秘密共享协议和实验方案研究,国家自然科学青年基金, 2018.1-2020.12;3)新型量子秘密共享协议与相关实验技术研究,广西自然科学青年基金,2017.09-2020.08;4)测量设备无关量子密钥分发实验研究,广西相对论天体物理重点实验开放课题, 2017.10-2019.9;5)基测量设备无关量子密钥分发协议理论研究,广西大学青年博士科研启动基金项目,2016.11-2018.11;
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论文、专著及专利*表示通信作者,#表示共同一作最新论文列表:https://scholar.google.com/citations?user=Fi3LJV8AAAAJ&hl=zh-CN&oi=ao第一作者或通信作者论文:1. K. Wei, W. Li, H. Tan, Y. Li, H. Min, W.-J. Zhang, H. Li, L. You, Z. Wang, X. Jiang, T.-Y. Chen, S.-K. Liao, C.-Z. Peng, F. Xu, and J.-W. Pan, \"High-Speed Measurement-Device-Independent Quantum Key Distribution with Integrated Silicon Photonics,\" Phys. Rev. X 10, 031030 (2020).2. D. Ma, Y. Wang, and K. Wei*, \"Practical source-independent quantum random number generation with detector efficiency mismatch,\" Quantum Inf. Process. 19, 384 (2020).(通信作者)3. K. Wei#, N. Tischler#, S.-R. Zhao, Y.-H. Li, J. M. Arrazola, Y. Liu, W. Zhang, H. Li, L. You, Z. Wang, Y.-A. Chen, B. C. Sanders, Q. Zhang, G. J. Pryde, F. Xu, and J.-W. Pan, \"Experimental Quantum Switching for Exponentially Superior Quantum Communication Complexity,\" Phys. Rev. Lett. 122, 120504 (2019).4. Y.-F. Jiang#, K. Wei#, L. Huang, K. Xu, Q.-C. Sun, Y.-Z. Zhang, W. Zhang, H. Li, L. You, Z. Wang, H.-K. Lo, F. Xu, Q. Zhang, and J.-W. Pan, \"Remote Blind State Preparation with Weak Coherent Pulses in the Field,\" Phys. Rev. Lett. 123, 100503 (2019).5. K. Wei, W. Zhang, Y.-L. Tang, L. You, and F. Xu, \"Implementation security of quantum key distribution due to polarization-dependent efficiency mismatch,\" Phys. Rev. A 100, 022325 (2019).6. K. Wei*, X. Yang, C. Zhu, and Z.-Q. Yin, \"Quantum secret sharing without monitoring signal disturbance,\" Quantum Inf. Process. 17, 230 (2018).7. X. Yang, K. Wei*, H. Ma, H. Liu, Z. Yin, Z. Cao, and L. Wu, \"Detector-device-independent quantum secret sharing with source flaws,\" Sci. Rep. 8, 5728 (2018).8. K. Wei, H. Liu, H. Ma, X. Yang, Y. Zhang, Y. Sun, J. Xiao, and Y. Ji, \"Feasible attack on detector-device-independent quantum key distribution,\" Sci. Rep. 7, 449 (2017).9. K. Wei, H. Ma, and X. Yang, \"Trustworthiness of devices in a quantum random number generator based on a symmetric beam splitter,\" Journal of the Optical Society of America B 34, 2185-2189 (2017).(编辑推荐论文)10. K. Wei, H.-Q. Ma, R.-X. Li, W. Zhu, H.-W. Liu, Y. Zhang, and R.-Z. Jiao, \"Analysis of Faraday Mirror in Auto-Compensating Quantum Key Distribution,\" Chinese. Phys. Lett. 32, 080303 (2015).11. K. Wei, H. Ma, and J. Yang, \"Experimental circular quantum secret sharing over telecom fiber network,\" Opt. Express 21, 16663-16669 (2013).(编辑推荐论文)12. K. Wei, H. Ma, and L. Wang, \"A quantum secret sharing scheme based on two polarization beam splitters,\" Acta Physica Sinica -Chinese Edition- 62, 104205-104209 (2013).非第一作者或通信作者论文:1. Y.-Z. Zhang, K. Wei, and F. Xu, \"Implementation security of quantum key distribution due to polarization-dependent efficiency mismatch,\" Phys. Rev. A 101, 033823 (2020).2. H. Liu, W. Wang, K. Wei, X.-T. Fang, L. Li, N.-L. Liu, H. Liang, S.-J. Zhang, W. Zhang, H. Li, L. You, Z. Wang, H.-K. Lo, T.-Y. Chen, F. Xu, and J.-W. Pan, \"Experimental Demonstration of High-Rate Measurement-Device-Independent Quantum Key Distribution over Asymmetric Channels,\" Phys. Rev. Lett. 122, 160501 (2019).3. Q. Li, C. Zhu, S. Ma, K. Wei, and C. Pei, \"Reference-frame-independent and measurement-device-independent quantum key distribution using one single source,\" Int. J. Theor. Phys. 57, 2192-2202 (2018).4. Z. Tang, K. Wei, O. Bedroya, L. Qian, and H.-K. Lo, \"Experimental measurement-device-independent quantum key distribution with imperfect sources,\" Phys. Rev. A 93, 042308 (2016). (IF=2.9,二区,top期刊)5. F. Xu, K. Wei, S. Sajeed, S. Kaiser, S. Sun, Z. Tang, L. Qian, V. Makarov, and H.-K. Lo, \"Experimental quantum key distribution with source flaws,\" Phys. Rev. A 92, 032305 (2015). (IF=2.9,二区,top期刊)6. X. Yang, K. Wei, H. Ma, S. Sun, H. Liu, Z. Yin, Z. Li, S. Lian, Y. Du, and L. Wu, \"Measurement-device-independent entanglement-based quantum key distribution,\" Phys. Rev. A 93, 052303 (2016). (IF=2.9,二区,top期刊)7. X. Yang, K. Wei, H. Ma, S. Sun, Y. Du, and L. Wu, \"Trojan horse attacks on counterfactual quantum key distribution,\" Phys. Lett. A 380, 1589-1592 (2016). (IF=1.6,三区)8. F. Xu#, J. M. Arrazola#, K. Wei, W. Wang, P. Palacios-Avila, C. Feng, S. Sajeed, N. Lutkenhaus, and H.-K. Lo, \"Experimental quantum fingerprinting with weak coherent pulses,\" Nat. Commun. 6 (2015). (IF=12.0,一区)9. M. Hai-Qiang, K. Wei, Y. Jian-Hui, L. Rui-Xue, and Z. Wu, \"A full quantum network scheme,\" Chinese Physics B 23, 100307 (2014).10. H.-Q. Ma, K. Wei, and J.-H. Yang, \"Experimental single qubit quantum secret sharing in a fiber network configuration,\" Opt. Lett. 38, 4494-4497 (2013). (IF=3.1,二区)
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