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Narrowband biphoton generation near atomic resonance

机译:原子共振附近的窄带双光子产生

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Generating nonclassical light offers a benchmark tool for fundamental research and potential applications in quantum optics. Conventionally, it has become a standard technique to produce nonclassical light through the nonlinear optical processes occurring in nonlinear crystals. We describe this process using cold atomic-gas media to generate such nonclassical light, especially focusing on narrowband biphoton generation. Compared with the standard procedure the new biphoton source has such properties as long coherence time, long coherence length, high spectral brightness, and high conversion efficiency. Although there exist two methodologies describing the physical process, we concentrate on the theoretical aspect of the entangled two-photon state produced from the four-wave mixing in a multilevel atomic ensemble using perturbation theory. We show that both linear and nonlinear optical responses to the generated fields play an important role in determining the biphoton waveform and, consequently, on the two-photon temporal correlation. There are two characteristic regimes determined by whether the linear or nonlinear coherence time is dominant. In addition, our model provides a clear physical picture that brings insight into understanding biphoton optics with this new source. We apply our model to recent work on generating narrowband (and even subnatural linewidth) paired photons using the technique of electromagnetically induced transparency and slow-light effect in cold atoms and find good agreement with experimental results. (C) 2008 Optical Society of America
机译:产生非经典光为量子光学的基础研究和潜在应用提供了基准工具。常规地,通过非线性晶体中发生的非线性光学过程产生非经典光已成为标准技术。我们描述了使用冷原子-气体介质生成这种非经典光的过程,尤其着重于窄带双光子的生成。与标准程序相比,新的双光子源具有相干时间长,相干长度长,光谱亮度高和转换效率高的特性。尽管存在两种描述物理过程的方法,但我们集中于使用扰动理论在多能级原子团中由四波混合产生的纠缠双光子态的理论方面。我们表明,对生成场的线性和非线性光学响应在确定双光子波形以及因此在双光子时间相关性中起着重要作用。线性相干时间或非线性相干时间是否占主导地位,决定了两种特征。此外,我们的模型提供了清晰的物理图像,使您可以通过这种新来源深入了解双光子光学器件。我们将模型应用到最近的工作中,该工作使用冷原子中的电磁感应透明性和慢光效应技术生成窄带(甚至亚自然线宽)配对的光子,并与实验结果很好地吻合。 (C)2008年美国眼镜学会

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