Sun Xing-Qu, Zhang Wei-Jun, Zhang Cheng-Jun, You Li-Xing, Xu Guang-Zhao, Huang Jia, Zhou Hui, Li Hao, Wang Zhen, Xie Xiao-Ming
Opt Express. 2021 Mar 29;29(7):11021-11036. doi: 10.1364/OE.419627.
Superconducting nanowire single-photon detectors (SNSPDs) have attracted remarkable interest for visible and near-infrared single-photon detection due to their outstanding performance. However, conventional SNSPDs are generally used as binary photon-counting detectors. Another important characteristic of light, i.e., polarization, which can provide additional information of the object, has not been resolved using the standalone SNSPD. In this work, we present a first prototype of the polarimeter based on a four-pixel superconducting nanowire array, capable of resolving the polarization state of linearly-polarized light at the single-photon level. The detector array design is based on a division of focal plane configuration in which the orientation of each nanowire division (pixel) is offset by 45°. Each single nanowire pixel operates as a combination of a photon detector and almost linear polarization filter, with an average polarization extinction ratio of ∼10. The total system detection efficiency of the array is ∼1% at a total dark count rate of 680 cps, with a timing jitter of 126 ps, when the detector array is free-space coupled and illuminated with 1550-nm photons. The mean errors of the measured angle of polarization and degree of linear polarization were about -3° and 0.12, respectively. Furthermore, we successfully demonstrated polarization imaging at low-light level using the proposed detector. Our results pave the way for the development of a single-photon sensitive, fast, and large-scale integrated polarization polarimeter or imager. Such detector may find promising application in photon-starved polarization resolving and imaging with high spatial and temporal resolution.
超导纳米线单光子探测器(SNSPD)因其卓越的性能,在可见光和近红外单光子探测领域引起了广泛关注。然而,传统的SNSPD通常用作二进制光子计数探测器。光的另一个重要特性,即偏振,它可以提供物体的额外信息,但使用单独的SNSPD尚未得到解决。在这项工作中,我们展示了基于四像素超导纳米线阵列的偏振计的首个原型,能够在单光子水平分辨线偏振光的偏振态。探测器阵列设计基于焦平面配置的划分,其中每个纳米线划分(像素)的取向偏移45°。每个单个纳米线像素作为光子探测器和几乎线性偏振滤波器的组合运行,平均偏振消光比约为10。当探测器阵列自由空间耦合并用1550nm光子照射时,阵列的总系统探测效率在总暗计数率为680 cps时约为1%,定时抖动为126 ps。测量的偏振角和线性偏振度的平均误差分别约为-3°和0.12。此外,我们使用所提出的探测器成功演示了低光水平下的偏振成像。我们的结果为单光子敏感、快速且大规模集成的偏振计或成像仪的发展铺平了道路。这种探测器可能在高空间和时间分辨率的光子匮乏偏振分辨和成像中找到有前景的应用。