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基于超导纳米线相机的抗噪声单光子成像

Noise-tolerant single-photon imaging with a superconducting nanowire camera.

作者信息

Kong Lingdong, Zhao Qingyuan, Zheng Kai, Lu Haiyangbo, Chen Shi, Tao Xu, Wang Hui, Hao Hao, Wan Chao, Tu Xuecou, Zhang Labao, Jia Xiaoqing, Kang Lin, Chen Jian, Wu Peiheng

出版信息

Opt Lett. 2020 Dec 15;45(24):6732-6735. doi: 10.1364/OL.394087.

Abstract

The quality of an image is limited to the signal-to-noise ratio of the output from sensors. As the background noise increases much more than the signal, which can be caused by either a huge attenuation of light pulses after a long-haul transmission or a blinding attack with a strong flood illumination, an imaging system stops working properly. Here we built a superconducting single-photon infrared camera of negligible dark counts and 60 ps timing resolution. Combining with an adaptive 3D slicing algorithm that gives each pixel an optimal temporal window to distinguish clustered signal photons from a uniformly distributed background, we successfully reconstructed 3D single-photon images at both a low signal level (∼1 average photon per pixel) and extremely high noise background (background-to-signal ratio = 200 within a period of 50 ns before denoising). Among all detection events, we were able to remove 99.45% of the noise photons while keeping the signal photon loss at 0.74%. This Letter is a direct outcome of quantum-inspired imaging that asks for a co-development of sensors and computational methods. We envision that the proposed methods can increase the working distance of a long-haul imaging system or defend it from blinding attacks.

摘要

图像的质量受限于传感器输出的信噪比。当背景噪声的增加远超信号时,成像系统就无法正常工作,这可能是由长距离传输后光脉冲的大幅衰减,或者强光泛滥照明的致盲攻击所导致。在此,我们构建了一款暗计数可忽略不计且定时分辨率为60皮秒的超导单光子红外相机。结合一种自适应3D切片算法,该算法为每个像素提供一个最佳时间窗口,以区分聚集的信号光子和均匀分布的背景,我们成功地在低信号水平(约每像素1个平均光子)和极高噪声背景(去噪前50纳秒内背景与信号比 = 200)下重建了3D单光子图像。在所有检测事件中,我们能够去除99.45%的噪声光子,同时将信号光子损失保持在0.74%。本信函是量子启发成像的直接成果,它要求传感器和计算方法协同发展。我们设想,所提出的方法可以增加长距离成像系统的工作距离,或使其免受致盲攻击。

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