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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Comprehensive characterization of a heralded single photon source based on four-wave mixing in optical fibers
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Comprehensive characterization of a heralded single photon source based on four-wave mixing in optical fibers

机译:基于光纤中四波混频的预示单光子源的全面表征

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摘要

A detailed statistical characterization of an optical signal obtained from a heralded single photon source is performed. The source is based on the spontaneous four-wave mixing process, and a dispersion shifted fiber is used to achieve phase matching. At source output, the derivation of the second-order coherence function shows the importance of choosing carefully the frequency detuning between the optical fields in order to avoid the uncorrelated photons generated through Raman scattering. Results indicate that with an accurate adjustment of the source parameters, it is possible to obtain an almost perfect conditional single photon source using spontaneous four-wave mixing. When a transmission fiber is considered, the losses change the source statistics due to the coupling with the noise absorption reservoir. Nevertheless, even at room temperature the impact of the absorption reservoir tends to be quite small, and the change is only observable for very long transmission lengths.
机译:对从预告的单个光子源获得的光信号进行详细的统计表征。该信号源基于自发的四波混频过程,并且使用色散位移光纤来实现相位匹配。在源输出处,二阶相干函数的推导显示了在光场之间仔细选择频率失谐的重要性,以避免产生因拉曼散射而产生的不相关光子。结果表明,通过精确调整源参数,可以使用自发四波混频获得几乎完美的条件单光子源。考虑传输光纤时,由于与噪声吸收池的耦合,损耗会改变源统计。然而,即使在室温下,吸收储库的影响也趋于很小,并且这种变化仅在非常长的传输长度下才可观察到。

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