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Superconducting single photon detectors based on multiple cascade switches of parallel NbN nanowires

机译:基于平行NbN纳米线的多个级联开关的超导单光子探测器

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Ultrathin NbN nanowires is the material of choice for superconducting single photon detectors (SSPD) due to the good efficiency, dark count rate and timing jitter at 1550 nm wavelength obtained. These performance parameters are achieved using nanowires a few nanometers thick and 100 nm wide patterned into a meander shape in order to achieve area coverage. The meander shape effectively makes the SSPD of a single very long nanowire in turn giving it a significant inductance which limits the maximum count rate of the detector. Recently, we demonstrated how one can exploit a cascade switch to the normal state of nanowires connected in parallel to significantly reduce the SSPD inductance and increase the signal amplitude. Here we present how one can configure SSPDs that uses multiple cascade switches to the normal state. We show how this principle can be used to expand the SSPD coverage area with a very limited increase in detector inductance with area. Finally we discuss our first results obtained with SSPD based on the multiple cascade switch principle, showing correct operation
机译:超薄NbN纳米线是超导单光子探测器(SSPD)的首选材料,因为它具有良好的效率,暗计数率和在1550 nm波长处的定时抖动。这些性能参数是使用几纳米厚和100 nm宽的纳米线图案化成曲折形状来实现的,以实现面积覆盖。蜿蜒的形状有效地使一根很长的纳米线的SSPD产生了很大的电感,从而限制了检测器的最大计数率。最近,我们演示了如何利用级联开关切换到并联的纳米线的正常状态,以显着降低SSPD电感并增加信号幅度。在这里,我们介绍了如何配置将多个级联交换机设置为正常状态的SSPD。我们展示了如何使用此原理来扩大SSPD覆盖范围,同时探测器电感随面积的增加非常有限。最后,我们讨论基于多重级联开关原理的SSPD获得的第一个结果,表明操作正确

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