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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Multiphoton amplification processes and quantum-path interferences in a coherently driven atomic vapor - art. no. 043824
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Multiphoton amplification processes and quantum-path interferences in a coherently driven atomic vapor - art. no. 043824

机译:相干驱动原子蒸气中的多光子放大过程和量子路径干扰-技术领域没有。 043824

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摘要

We develop a theoretical model of two-photon amplification in laser-driven potassium atoms and use it to analyze the recent experiments reported by Pfister et al. [Phys. Rev. A 60, R4249 (1999)]. The model takes into account most of the essential factors influencing the amplification process, including the atomic hyperfine structure (which makes multiphoton emission possible) and the simultaneous interaction with intense drive and probe beams with arbitrary detunings. We determine the origin and analyze the properties of different multiphoton gain resonances that appear in the light-matter interaction. In particular, the influence of the drive and probe field amplitudes and detunings on the strength and frequency of the two-photon amplification resonance is studied in detail, showing clearly the differences with respect to the behavior of single-photon or other multiphoton amplification processes. In addition, we investigate interferences between different quantum pathways originating from the hyperfine structure and determine the conditions under which they can enhance or suppress multiphoton resonances. The predictions of the model are in good agreement with the observations, indicating that it can be used to understand recent experiments on two-photon lasing reported by Pfister et al. [Phys. Rev. Lett. 86, 4512 (2001)]. [References: 23]
机译:我们建立了激光驱动钾原子中双光子放大的理论模型,并用它来分析Pfister等人最近报道的实验。 [物理Rev.A 60,R4249(1999)]。该模型考虑了影响放大过程的大多数基本因素,包括原子超精细结构(使多光子发射成为可能)以及与强烈驱动和探测光束同时发生任意失谐的同时相互作用。我们确定了起源并分析了在光-物质相互作用中出现的不同多光子增益共振的性质。尤其是,详细研究了驱动场和探头场振幅以及失谐对双光子放大共振的强度和频率的影响,清楚地显示了关于单光子或其他多光子放大过程的行为的差异。此外,我们研究了源自超精细结构的不同量子路径之间的干扰,并确定了它们可以增强或抑制多光子共振的条件。该模型的预测与观察结果非常吻合,表明该模型可用于理解Pfister等人报道的有关双光子激光的最新实验。 [物理牧师86,4512(2001)]。 [参考:23]

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