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Fiber-coupled quantum-communications receiver based on two NbN superconducting single-photon detectors

机译:基于两个NbN超导单光子探测器的光纤耦合量子通信接收机

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We present the design and performance of a novel, two-channel single-photon receiver, based on two fiber-coupled NbN superconducting single-photon detectors (SSPDs). The SSPDs are nanostructured superconducting meanders covering an area of 100 μm~2 and are known for ultrafast and efficient counting of single, visible-to-infrared photons. Their operation has been explained within a phenomenological hot-electron photoresponse model. Our receiver is intended for fiber-based quantum cryptography and communication systems, operational at near-infrared (NIR) telecommunication wavelengths, λ = 1.3 μm and λ = 1.55 μm. Coupling between the NbN detector and a single-mode optical fiber was achieved using a specially designed, micromechanical photoresist ring, positioned directly over the SSPD active area. The positioning accuracy of the ring was below 1 μm. The receiver with SSPDs was placed (immersed) in a standard liquid-helium transport Dewar and kept without interruption for over two months at 4.2 K. At the same time, the optical fiber inputs and electrical outputs were kept at room temperature. Our best system reached a system quantum efficiency of up to 0.3 % in the NIR radiation range, with the detector coupling efficiency of about 30 %. The response time was measured to be about 250 ps and was limited by our read-out electronics. The measured jitter was close to 35 ps. The presented performance parameters show that our NIR single photon detectors are suitable for practical quantum cryptography and for applications in quantum-correlation experiments.
机译:我们介绍了基于两个光纤耦合NbN超导单光子探测器(SSPD)的新型两通道单光子接收器的设计和性能。 SSPD是覆盖100μm〜2面积的纳米结构超导曲折,以超快速,高效地计数单个可见光到红外光子而闻名。它们的操作已在现象学热电子光响应模型中进行了解释。我们的接收器适用于基于光纤的量子密码学和通信系统,可在λ= 1.3μm和λ= 1.55μm的近红外(NIR)电信波长下工作。 NbN检测器与单模光纤之间的耦合是通过专门设计的微机械光刻胶环实现的,该环直接位于SSPD有源区域上方。环的定位精度低于1μm。将带有SSPD的接收器放置(浸入)标准液氦运输杜瓦瓶中,并在4.2 K下连续两个月不间断地保持。同时,光纤输入和电输出保持在室温下。我们最好的系统在NIR辐射范围内的系统量子效率高达0.3%,探测器耦合效率约为30%。测量的响应时间约为250 ps,并受我们的读出电子设备的限制。测得的抖动接近35 ps。给出的性能参数表明,我们的NIR单光子检测器适用于实际的量子密码术以及量子相关实验中的应用。

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