论文标题

基于超导纳米线阵列的单光子线性偏振仪

Single-photon linear polarimeter based on a superconducting nanowire array

论文作者

Sun, X. Q., Zhang, W. J., Zhang, C. J., You, L. X., Xu, G. Z., Huang, J., Li, H., Wang, Z., Xie, X. M.

论文摘要

超导纳米线单光子探测器(SNSPDS)引起了人们对可见和近红外单光子检测的极大兴趣,这是由于其出色的性能。常规SNSPD通常用作二元光子计数检测器。光(即极化)的另一个重要特征尚未使用独立的SNSPD解决。在这项工作中,我们基于四像素NBN超导纳米线阵列进行了模拟,制造和表征线性偏振仪,能够解决单光子水平的线性极化光线的极化状态。检测器阵列设计基于焦平面传感器的划分,其中每个纳米线分裂(像素)的方向被抵消45度。每个单个纳米线像素作为光子检测器和几乎线性极化滤波器的组合,平均极化灭绝率约为10。当检测器阵列与1550 nm Photem-Phote-1550 nm Photem-Phote-Space Array时,四个像素的总系统检测效率约为1%。从四个像素的极化测量值中提取Stokes参数。测得的AOP和DOLP的平均误差分别约为-3度和0.12。我们的结果表明,可以基于超导纳米线阵列开发可扩展的极化计或成像仪。该检测器阵列可能在单光子极化检测和成像中发现有希望的应用。

Superconducting nanowire single-photon detectors (SNSPDs) have attracted remarkable interest for visible and near infrared single-photon detection, owing to their outstanding performance. Conventional SNSPDs are generally used as binary photon-counting detector. Another important characteristic of light, i.e., polarization, has not been resolved using standalone SNSPDs. In this work, we simulated, fabricated, and characterized a linear polarimeter based on a four-pixel NbN 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 sensor, in which the orientation of each nanowire division (pixel) is offset by 45 degree. Each single nanowire pixel operates as a combination of photon detector and almost linear polarization filter, with an average polarization extinction ratio of approximately 10. The total system detection efficiency with four pixels is approximately 1% at a total dark count rate of 680 cps, when the detector array is free-space coupled and illuminated with 1550 nm photons. The Stokes parameters are extracted from polarization measurements of the four pixels. The mean errors of the measured AoP and DoLP were about -3 degree and 0.12, respectively. Our results indicate that it is possible to develop a scalable polarization polarimeter or imager based on a superconducting nanowire array. This detector array may find promising application in single-photon polarization detection and imaging.

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