Wang Heqing, Li Hao, You Lixing, Hu Peng, Zhang Xingyu, Yong Wang, Zhang Weijun, Yang Xiaoyan, Zhang Lu, Zhou Hui, Wang Zhen, Xie Xiaoming
Appl Opt. 2019 Oct 20;58(30):8148-8152. doi: 10.1364/AO.58.008148.
In this work, we report a large-active-area multispectral superconducting nanowire single-photon detector for free-space applications. The detector is realized by fabricating NbTiN nanowire with an active area of 35 µm diameter on two serially connected dielectric mirrors that can simultaneously and efficiently detect single photons at the three typical wavelengths employed in free-space applications, namely, 532, 850, and 1064 nm. Maximal system detection efficiencies (SDEs) of 80.0% at 532 nm and 850 nm and 75.8% at 1064 nm are achieved for polarized light obtained by coupling the detector with an SMF-28 fiber. Upon coupling with a 50 µm multimode fiber, SDEs of 68.6%, 59.6%, and 47.0%, are achieved for 532, 850, and 1064 nm wavelength unpolarized light, respectively. Moreover, the detector shows timing jitters of 37.1 and 41.0 ps when coupled with SMF-28 fiber and 50 µm multimode fiber. This type of detector with a large active area and multiwavelength detection capability is promising for both single and multiwavelength free-space applications.
在这项工作中,我们报道了一种用于自由空间应用的大有效面积多光谱超导纳米线单光子探测器。该探测器通过在两个串联的介质镜上制造直径为35 µm有效面积的NbTiN纳米线来实现,它能够同时高效地探测自由空间应用中使用的三个典型波长(即532、850和1064 nm)的单光子。通过将探测器与SMF - 28光纤耦合获得的偏振光,在532 nm和850 nm处实现了80.0%的最大系统探测效率(SDE),在1064 nm处实现了75.8%。当与50 µm多模光纤耦合时,对于532、850和1064 nm波长的非偏振光,SDE分别达到68.6%、59.6%和47.0%。此外,当与SMF - 28光纤和50 µm多模光纤耦合时,探测器的定时抖动分别为37.1和41.0 ps。这种具有大有效面积和多波长探测能力的探测器对于单波长和多波长自由空间应用都很有前景。