论文标题
带有手持发送者单元的量子密钥分布
Quantum Key Distribution with a Hand-held Sender Unit
论文作者
论文摘要
量子密钥分布(QKD)是真正安全通信的关键组件,这使得由于窃听器攻击而分析信息的泄漏。尽管在长距离实现领域取得了令人印象深刻的进展,但涉及短途链接的用户为导向的应用程序仍被忽略了。现在,集成光子学的最新技术进步使现有手持通信平台的发展也可以开发QKD。在这项工作中,我们报告了手持自由空间QKD系统的设计和评估,包括基于微观的发件人单元。该系统实现了BB84协议,采用极化编码的微弱激光脉冲以100 MHz的速度实现。接收器侧的单向光束跟踪和实时参考框架对准系统在将便携式发射机瞄准接收器输入到接收器的距离内,从大约半米的距离将稳定的操作超过数十秒。相对于发射器安装和对齐的发射器的情况,不同未经培训的用户的成功键交易所确认了我们系统的用户友好性。在这些测试中,我们达到的平均量子位误差比(QBER)为2.4%,渐近秘密密钥率在4.0 kbps到15.3 kbps之间。鉴于其紧凑性,多功能发件人光学器件也非常适合集成到其他距离内QKD的其他自由空间通信系统中。
Quantum key distribution (QKD) is a crucial component for truly secure communication, which enables to analyze leakage of information due to eavesdropper attacks. While impressive progress was made in the field of long-distance implementations, user-oriented applications involving short-distance links have mostly remained overlooked. Recent technological advances in integrated photonics now enable developments towards QKD also for existing hand-held communication platforms. In this work we report on the design and evaluation of a hand-held free-space QKD system including a micro-optics based sender unit. This system implements the BB84-protocol employing polarization-encoded faint laser pulses at a rate of 100 MHz. Unidirectional beam tracking and live reference-frame alignment systems at the receiver side enable a stable operation over tens of seconds when aiming the portable transmitter to the receiver input by hand from a distance of about half a meter. The user-friendliness of our system was confirmed by successful key exchanges performed by different untrained users with an average link efficiency of about 20 % relative to the case of the transmitter being stationarily mounted and aligned. In these tests we achieve an average quantum bit error ratio (QBER) of 2.4 % and asymptotic secret key rates ranging from 4.0 kbps to 15.3 kbps. Given its compactness, the versatile sender optics is also well suited for integration into other free-space communication systems enabling QKD over any distance.