Fukuda Daiji, Fujii Go, Numata Takayuki, Amemiya Kuniaki, Yoshizawa Akio, Tsuchida Hidemi, Fujino Hidetoshi, Ishii Hiroyuki, Itatani Taro, Inoue Shuichiro, Zama Tatsuya
National Institute of Advanced Industrial Science and Technology, Tsukuba, Ibaraki, Japan.
Opt Express. 2011 Jan 17;19(2):870-5. doi: 10.1364/OE.19.000870.
We have realized a high-detection-efficiency photon number resolving detector at an operating wavelength of about 850 nm. The detector consists of a titanium superconducting transition edge sensor in an optical cavity, which is directly coupled to an optical fiber using an approximately 300-nm gap. The gap reduces the sensitive area and heat capacity of the device, leading to high photon number resolution of 0.42 eV without sacrificing detection efficiency or signal response speed. Wavelength dependent efficiency in fiber-coupled devices, which is due to optical interference between the fiber and the device, is also decreased to less than 1% in this configuration. The overall system detection efficiency is 98%±1% at wavelengths of around 850 nm, which is the highest value ever reported in this wavelength range.
我们已经实现了一种工作波长约为850nm的高探测效率光子数分辨探测器。该探测器由光学腔中的钛超导转变边缘传感器组成,它通过一个约300nm的间隙直接与光纤耦合。该间隙减小了器件的敏感面积和热容量,从而在不牺牲探测效率或信号响应速度的情况下实现了0.42eV的高光子数分辨率。在这种配置下,光纤耦合器件中由于光纤与器件之间的光干涉导致的波长相关效率也降低到了1%以下。在波长约为850nm时,整个系统的探测效率为98%±1%,这是该波长范围内报道过的最高值。