论文标题

多通道频率混合器和单光子检测器的单片光子芯片

Monolithic photonic chips for multi-channel frequency mixers and single photon detectors

论文作者

Zheng, Ming-Yang, Yao, Quan, Wang, Bing, Xie, Xiuping, Zhang, Qiang, Pan, Jian-Wei

论文摘要

Niobate光子芯片锂可以实现各种光学工程,用于从其出色的光学性能中受益的各种应用。在这封信中,我们演示了基于反向质子交换的多通道总和频率转换的单片光子芯片,其定期粘液液二甲虫波导,不同的通道显示均匀且出色的转换效率。为了获得强大的设备并为应用提供方便的接口,集成的芯片与两个光纤阵列相结合。然后,包装的芯片形成了多通道上转换单个光子检测器的核心。在每个通道中,输入信号与1950 nm的单频泵激光器相互作用,并通过硅雪崩光电二极管对总和频率输出进行光谱过滤和检测。在30个频道上,平均检测效率(DE)为23.2%,每秒557次计数(NCR)为每秒557个计数(CP),标准偏差为2.73%和48 cps,以及在附近的频道之间的平均偏差(OI),以及在附近的频道之间的71 dB之间的良好范围,这些频率均超过71 db,包括量子量的高度良好的范围,包括单位量的高度构成单位光电量的范围。和单光子成像。

Lithium niobate photonic chip could realize diverse optical engineering for various applications benefiting from its excellent optical performances. In this letter, we demonstrate monolithic photonic chips for multi-channel sum-frequency conversion based on reverse-proton-exchange periodically poled lithium niobate waveguides, with the different channels showing uniform and excellent conversion efficiencies. To obtain a robust device and provide a convenient interface for applications, the integrated chip is fiber coupled with two fiber arrays. The packaged chip then forms the core of a multi-channel up conversion single photon detector. In each channel the input signal interacts with a 1950-nm single frequency pump laser and the sum frequency output is spectrally filtered and detected by a silicon avalanche photodiode. Average detection efficiency (DE) of 23.2 % and noise count rate (NCR) of 557 counts per second (cps) are achieved, with a standard deviation of 2.73 % and 48 cps over the 30 channels, as well as optical isolation (OI) between nearby channels of more than 71 dB, which are excellent for the extensive applications of monolithic photonic chips in fields including deep space laser communication, high-rate quantum key distribution and single-photon imaging.

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