Yao Ni, Yao Quan, Xie Xiu-Ping, Liu Yang, Xu Peizhen, Fang Wei, Zheng Ming-Yang, Fan Jingyun, Zhang Qiang, Tong Limin, Pan Jian-Wei
Opt Express. 2020 Aug 17;28(17):25123-25133. doi: 10.1364/OE.397767.
High-performance single-photon detectors (SPDs) at 1550-nm band are critical for fiber-based quantum communications. Among many types of SPDs, the up-conversion SPDs based on periodically poled lithium niobate waveguides are of great interest. Combined with a strong pump laser, the telecom single-photons are converted into short wavelength ones and detected by silicon-based SPDs. However, due to the difficulty of precise controlling waveguide profile, the direct coupling between a single-mode fiber and the waveguide is not efficient. Here by utilizing fiber taper with proper diameter, optimal mode-matching is achieved and coupling efficiency up to 93% is measured. With an optimized design, a system detection efficiency of 36% and noise counting rate of 90 cps are realized. The maximum detection efficiency is characterized as 40% with a noise counting rate of 200 cps. Numerical simulation results indicate that our device can significantly improve the performance of QKD and extend the communication distance longer than 200 km.
1550纳米波段的高性能单光子探测器(SPD)对于基于光纤的量子通信至关重要。在众多类型的SPD中,基于周期性极化铌酸锂波导的上转换SPD备受关注。与强泵浦激光器相结合,电信单光子被转换为短波长光子,并由硅基SPD进行检测。然而,由于精确控制波导轮廓存在困难,单模光纤与波导之间的直接耦合效率不高。在此,通过使用具有适当直径的光纤锥,实现了最佳模式匹配,并测得耦合效率高达93%。经过优化设计,实现了36%的系统探测效率和90 cps的噪声计数率。最大探测效率为40%,噪声计数率为200 cps。数值模拟结果表明,我们的器件能够显著提高量子密钥分发(QKD)的性能,并将通信距离延长至超过200公里。