Tyler Nicola A, Barreto Jorge, Villarreal-Garcia Gerardo E, Bonneau Damien, Sahin Döndü, O'Brien Jeremy L, Thompson Mark G
Opt Express. 2016 Apr 18;24(8):8797-808. doi: 10.1364/OE.24.008797.
In this work we report on a single photon detector system which offers near-unity detection efficiency using waveguide-coupled superconducting nanowires with lengths on the order of 1 μm. This is achieved by embedding the nanowires in a racetrack resonator where the interaction time with the photons trapped in the cavity is increased, thereby allowing for shorter nanowires. We expect this to lead to a higher fabrication yield as the amount of inhomogeneities decreases for shorter nanowires. Our simulations show a system with a 1 μm long superconducting nanowire single photon detector (SNSPD) operating at near-unity detection efficiency using design parameters that can be realistically achieved with conventional fabrication processes. The resonant cavity introduces spectral selectivity to the otherwise broad-band SNSPDs and the cavity induced timing jitter is shown to be insignificant for SNSPDs longer than 1 μm.
在这项工作中,我们报告了一种单光子探测器系统,该系统使用长度约为1μm的波导耦合超导纳米线,实现了接近单位的探测效率。这是通过将纳米线嵌入跑道形谐振器中来实现的,在该谐振器中,与捕获在腔内的光子的相互作用时间增加,从而可以使用更短的纳米线。我们预计,随着纳米线长度缩短,不均匀性减少,这将带来更高的制造良率。我们的模拟显示,一个使用1μm长超导纳米线单光子探测器(SNSPD)的系统,采用常规制造工艺能够实际实现的设计参数,可在接近单位探测效率下运行。谐振腔为原本宽带的SNSPD引入了光谱选择性,并且对于长度超过1μm的SNSPD,腔诱导的定时抖动被证明是微不足道的。