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Improving detection efficiency of superconducting nanowire single-photon detector using multilayer antireflection coating

机译:使用多层抗反射涂层提高超导纳米线单光子探测器的检测效率

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Optical cavity with backside optical coupling is one of the prevalent optical structures for superconducting nanowire single photon detector. A single layer anti-reflection coating (ARC) on the backside of the substrate is often adopted to enhance the transmittance to the substrate. We here apply a multilayer ARC to further increase the transmittance from 94.5% to 99.5%. An NbTiN SNSPD made on such a substrate with cavity structure presents a system detection efficiency of 90.1% at a dark count rate (DCR) of 100 Hz, which is the best value reported for backside optical coupled SNSPD at 1550 nm. It shows a timing jitter of ~40.7 ps and the recovery time constant of ~22.9 ns.
机译:具有背面光学耦合的光学腔是用于超导纳米线单光子检测器的普遍光学结构之一。通常采用基板背面的单层抗反射涂层(弧)来增强透射率对基板。我们在这里涂抹多层电弧,进一步将透射率从94.5%增加到99.5%。在这种带有腔结构的基板上制造的NBTIN SNSPD,在100Hz的暗计数(DCR)下的系统检测效率为90.1%,这是在1550nm处的反向光学耦合SNSPD报告的最佳值。它显示了〜40.7 ps的时序抖动和〜22.9 ns的恢复时间常数。

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