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Partially Nondestructive Continuous Detection of Individual Traveling Optical Photons

机译:单个行走光学光子的部分非破坏性连续检测

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摘要

We report the continuous and partially nondestructive measurement of optical photons. For a weak light pulse traveling through a slow-light optical medium (signal), the associated atomic-excitation component is detected by another light beam (probe) with the aid of an optical cavity. We observe strong correlations of g[(2) over sp] = 4.4(5) between the transmitted signal and probe photons. The observed (intrinsic) conditional nondestructive quantum efficiency ranges between 13% and 1% (65% and 5%) for a signal transmission range of 2% to 35%, at a typical time resolution of 2.5  μs. The maximal observed (intrinsic) device nondestructive quantum efficiency, defined as the product of the conditional nondestructive quantum efficiency and the signal transmission, is 0.5% (2.4%). The normalized cross-correlation function violates the Cauchy-Schwarz inequality, confirming the nonclassical character of the correlations.
机译:我们报告了光学光子的连续和部分非破坏性测量。对于穿过慢光光学介质(信号)的微弱光脉冲,借助另一个光束(探针)借助光学腔检测相关的原子激发分量。我们观察到g [(2)在sp]上的强相关性= 4.4(5)在发射信号和探针光子之间。对于信号传输范围为2%至35%的情况,观察到的(本征)条件非破坏性量子效率范围为13%至1%(65%和5%),典型时间分辨率为2.5µs。观察到的(本征)器件的最大无损量子效率(定义为有条件无损量子效率和信号传输的乘积)为0.5%(2.4%)。归一化互相关函数违反了Cauchy-Schwarz不等式,证实了相关性的非经典特征。

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