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计算机工程

• 安全技术 • 上一篇    下一篇

量子密钥分发中的偏振补偿方法

钟先锋1,曹蕾1,刘尉悦1,王潮泽1,李凤芝1,蒋志迪1,彭承志2   

  1. (1.宁波大学 信息科学与工程学院,浙江 宁波 315211; 2.中国科学技术大学 近代物理系,合肥 230026)
  • 收稿日期:2015-11-09 出版日期:2016-12-15 发布日期:2016-12-15
  • 作者简介:钟先锋(1992—),男,硕士研究生,主研方向为量子通信安全;曹蕾,硕士研究生;刘尉悦(通讯作者),副教授、博士;王潮泽、李凤芝,硕士研究生;蒋志迪,讲师;彭承志,教授。
  • 基金资助:
    浙江省自然科学基金(LY13F050007,LY17F050004);宁波市自然科学基金(2010A610175)。

Method for Polarization Compensation in Quantum Key Distribution

ZHONG Xianfeng  1,CAO Lei  1,LIU Weiyue  1,WANG Chaoze  1,LI Fengzhi  1,JIANG Zhidi  1,PENG Chengzhi  2   

  1. (1.College of Information Science and Engineering,Ningbo University,Ningbo,Zhejiang 315211,China; 2.Department of Modern Physics,University of Science and Technology of China,Hefei 230026,China)
  • Received:2015-11-09 Online:2016-12-15 Published:2016-12-15

摘要: 量子密钥分发采用的是偏振编码,用普通的单模光纤作为量子态传输的量子信道时,光纤会出现轻微的双折射效应,不能保持量子偏振态。为此,提出对量子态进行偏振补偿的方法。通过逐步逼近的方式,采用2个四分之一波片和1个半波片的旋转组合,实现对光纤的偏振补偿。通过测量得到系统的偏振对比度,并根据测量的结果逐步调整三波片的旋转角度,直到系统的偏振性能满足要求。仿真结果表明,与采用遍历方式的偏振补偿方法相比,逐步逼近的方法能更快地实现偏振补偿。

关键词: 偏振补偿, 逐步逼近, 遍历, 波片, 阈值, 偏振对比

Abstract: Quantum key distribution uses polarization coding.When using conventional single-mode fiber as the channel for quantum state transfer,optical fiber has a slight birefringence and cannot maintain the quantum state of polarization.In this case,this paper proposes a method to make polarization compensation for quantum state.Using the polarization compensation method of successive approximation,it is a promising scheme to complete the polarization compensation by rotating the combination of 2 quarter-wave plate and 1 half-wave plate successively.By measuring the values of polarization contrast ratio,it rotates the three wave plates according to the results of the measurement,until the polarization performance of the system finally meets the requirements.Experimental results show that compared with the polarization compensation method of traversal mode,the method of successive approximation can realize polarization compensation more quickly.

Key words: polarization compensation, successive approximation, traverse, wave plate, threshold, polarization contrast

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