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Long-haul and high-resolution optical time domain reflectometry using superconducting nanowire single-photon detectors

机译:使用超导纳米线单光子检测器的长距离高分辨率光学时域反射仪

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In classical optical time domain reflectometries (OTDRs), for sensing an 200-km-long fiber, the optical pulses launched are as wide as tens of microseconds to get enough signal-to-noise ratio, while it results in a two-point resolution of kilometers. To both reach long sensing distance and sub-kilometer resolution, we demonstrated a long-haul photon-counting OTDR using a superconducting nanowire single-photon detector. In a 40-minute-long measurement, we obtained a dynamic range of 46.9?dB, corresponding to a maximum sensing distance of 246.8?km, at a two-point resolution of 0.1?km. The time for measuring fiber after 100?km was reduced to one minute, while the fiber end at 217?km was still distinguished well from noise. After reducing the pulse width to 100?ns, the experimental two-point resolution was improved to 20?m while the maximum sensing distance was 209.47?km.
机译:在经典的光时域反射仪(OTDR)中,为了感应200公里长的光纤,发射的光脉冲宽度高达数十微秒,以获得足够的信噪比,同时产生两点分辨率公里。为了达到长感应距离和亚千米分辨率,我们演示了使用超导纳米线单光子探测器进行的长距离光子计数OTDR。在长达40分钟的测量中,我们获得了46.9?dB的动态范围,对应于0.1?km的两点分辨率,最大感应距离为246.8?km。 100公里后的光纤测量时间减少到一分钟,而光纤末端的217公里仍与噪音区分开。在将脉冲宽度减小到100?ns之后,实验的两点分辨率提高到20?m,同时最大感应距离为209.47?km。

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