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Superconducting niobium nanowire single photon detectors

机译:超导铌纳米线单光子探测器

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We have fabricated and tested single photon detectors based on a current biased superconducting niobium nanowire patterned into a meander. The detectors are fabricated from high quality, ultra high vacuum sputtered niobium thin films on a sapphire substrate. For detection of single optical photons, we show that the superconductor's intrinsic kinetic inductance does not limit the reset time of the detector, which is ≈ 2 nanoseconds, in contrast to the longer reset times seen in niobium nitride detectors of similar size and geometry. We also describe a readout scheme for photon counting that is unique to Nb due to its lower resistivity. These detectors have applications in imaging of infrared photoemission from CMOS logic circuits as well as in optical communications and quantum information processing.
机译:我们基于电流偏置超导铌纳米线制造和测试的单光子探测器,图案化成曲折。探测器由高质量的超高真空溅射铌薄膜制成,在蓝宝石衬底上。为了检测单光学光子,我们表明超导体的内在动力学电感不限制检测器的复位时间,其是≈2纳秒,与类似尺寸和几何形状的氮化铌检测器中看到的较长的复位时间相比。我们还描述了一种用于光子计数的读出方案,其由于其电阻率较低而是Nb独特的。这些探测器具有在CMOS逻辑电路以及光通信和量子信息处理中的红外光曝光的应用中的应用。

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