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A Stochastic SPICE Model for Superconducting Nanowire Single Photon Detectors and Other Nanowire Devices

机译:用于超导纳米线单光子探测器和其他纳米线设备的随机SPICE模型

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Superconducting nanowire devices, such as the superconducting nanowire single photon detector (SNSPD) or nanocryotron, have a time-dependent stochasticity that depends on the current flowing through them. When modeling complex circuits made of several such devices (for instance, an array of SNSPDs), the ability to include this randomness can he important for predicting unwanted effects and interactions within the circuit. We present a modification of the model described by Berggren et al. that allows for the inclusion of this stochasticity into the nanowire device model. We then verify the model against experiment using a tungsten silicide SNSPD, and show that the modified model replicates the stochasticity of the physical device.
机译:超导纳米线设备(例如超导纳米线单光子检测器(SNSPD)或纳米冷冻管)具有随时间变化的随机性,该随机性取决于流过它们的电流。当对由多个这样的设备(例如,SNSPD的阵列)组成的复杂电路进行建模时,包含这种随机性的能力对于预测电路内的不良影响和相互作用非常重要。我们提出了由Berggren等人描述的模型的修改。允许将这种随机性纳入纳米线器件模型中。然后,我们针对使用硅化钨SNSPD进行的实验验证了该模型,并表明修改后的模型可以复制物理设备的随机性。

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