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首页> 外文期刊>Journal of Modern Optics >Ultrafast superconducting single-photon detectors for near-infrared-wavelength quantum communications
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Ultrafast superconducting single-photon detectors for near-infrared-wavelength quantum communications

机译:用于近红外波长量子通信的超快超导单光子探测器

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The paper reports progress on the design and development of niobium-nitride, superconducting single-photon detectors (SSPDs) for ultrafast counting of near-infrared photons for secure quantum communications. The SSPDs operate in the quantum detection mode, based on photon-induced hotspot formation and subsequent appearance of a transient resistive barrier across an ultrathin and submicron-width superconducting stripe. The devices are fabricated from 3.5 nm thick NbN films and kept at cryogenic (liquid helium) temperatures inside a cryostat. The detector experimental quantum efficiency in the photon-counting mode reaches above 20% in the visible radiation range and up to 10% at the 1.3-1.55 μm infrared range. The dark counts are below 0.01 per second. The measured real-time counting rate is above 2 GHz and is limited by readout electronics (the intrinsic response time is below 30 ps). The SSPD jitter is below 18 ps, and the best-measured value of the noise-equivalent power (NEP) is 2 × 10~(-18) W/Hz~(1/2) at 1.3 μm. In terms of photon-counting efficiency and speed, these NbN SSPDs significantly outperform semiconductor avalanche photodiodes and photomultipliers.
机译:该论文报道了用于安全地进行量子通信的近红外光子超快计数的氮化铌超导单光子探测器(SSPD)的设计和开发进展。 SSPD基于光子诱导的热点形成以及随后在超薄和亚微米宽度的超导条带上出现瞬态电阻垒的情况,以量子检测模式工作。器件由3.5 nm厚的NbN薄膜制成,并保持在低温恒温器内的低温(液氦)温度下。在光子计数模式下,探测器的实验量子效率在可见辐射范围内达到20%以上,在1.3-1.55μm红外范围内达到10%。暗计数低于每秒0.01。测得的实时计数率高于2 GHz,并受读出电子设备的限制(固有响应时间低于30 ps)。 SSPD抖动低于18 ps,在1.3μm时,最佳噪声等效功率(NEP)的测量值为2×10〜(-18)W / Hz〜(1/2)。就光子计数效率和速度而言,这些NbN SSPD明显优于半导体雪崩光电二极管和光电倍增管。

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