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光纤中光的量子频率转换理论:应用于不同颜色两个光子的干涉

Theory of quantum frequency translation of light in optical fiber: application to interference of two photons of different color.

作者信息

McGuinness H J, Raymer M G, McKinstrie C J

机构信息

Department of Physics, University of Oregon, Eugene, Oregon 97403, USA.

出版信息

Opt Express. 2011 Sep 12;19(19):17876-907. doi: 10.1364/OE.19.017876.

Abstract

We study quantum frequency translation and two-color photon interference enabled by the Bragg scattering four-wave mixing process in optical fiber. Using realistic model parameters, we computationally and analytically determine the Green function and Schmidt modes for cases with various pump-pulse lengths. These cases can be categorized as either "non-discriminatory" or "discriminatory" in regards to their propensity to exhibit high-efficiency translation or high-visibility two-photon interference for many different shapes of input wave packets or for only a few input wave packets, respectively. Also, for a particular case, the Schmidt mode set was found to be nearly equal to a Hermite-Gaussian function set. The methods and results also apply with little modification to frequency conversion by sum-frequency conversion in optical crystals.

摘要

我们研究了光纤中由布拉格散射四波混频过程实现的量子频率转换和双色光子干涉。使用实际的模型参数,我们通过计算和分析确定了各种泵浦脉冲长度情况下的格林函数和施密特模式。就它们对许多不同形状的输入波包表现出高效转换或对仅少数输入波包表现出高可见度双光子干涉的倾向而言,这些情况可分别归类为“非歧视性”或“歧视性”。此外,对于一个特定情况,发现施密特模式集几乎等于厄米 - 高斯函数集。这些方法和结果稍加修改也适用于光学晶体中的和频转换频率转换。

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