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Photon-number-resolving detection at 1.04 (mu)m via coincidence frequency upconversion

机译:通过重合频率上转换在1.04μm处检测光子数

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摘要

We demonstrate photon-number-resolving detection based on coincidence frequency upconversion. Pumped by synchronized pulses, the photon signal of the coherent state at 1.04 (mu)m was upconverted into visible replicas with preserved photon number distribution. The upconverted photons were then registered by a silicon multipixel photon counter. The photon-number-resolving performance was improved by reducing the background counts with a synchronous pump as the coincidence gate and reducing the intrinsic parametric fluorescence influence with long-wavelength pumping. A total detection efficiency of 3.7percent was achieved with a quite low noise probability per pulse of 0.0002.
机译:我们展示了基于重合频率上变频的光子数解析检测。通过同步脉冲泵浦,相干态的光子信号在1.04μm处被上转换为可见的副本,并保留了光子数分布。然后由硅多像素光子计数器记录上转换的光子。通过减少同步泵作为同步门的背景计数并减少长波长泵浦的固有参量荧光影响,提高了光子数分辨性能。每个脉冲的噪声概率为0.0002,因此总检测效率为3.7%。

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