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Nondegenerate four-wave mixing in a double-/spl Lambda/ system under the influence of coherent population trapping

机译:在相干人口陷阱的影响下,双-spl Lambda /系统中的非简并四波混合

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The atomic coherence effect can be used in enhancing the efficiencies of nonlinear optical processes. Particularly, nondegenerate four-wave mixing (NDFWM) in multilevel systems has recently gained attention in connection with the advantage of using coherent population trapping (CPT) or electromagnetically induced transparency (EIT) to enhance the efficiency of generated signals. Generally speaking, linear absorption competes with the nonlinear signal generation at the exact one-photon resonance condition. However, the linear absorption can, in principle, be reduced or even eliminated by preparing the system in the CPT or EIT state. We report experimental demonstrations of NDFWM in several multi-level configurations in rubidium atomic vapor. In one of the double-/spl Lambda/ systems an unusual behavior of signal output power as a function of pump power, i.e. a maximum in the generated signal power is reached as the pump power increases, is experimentally observed. By comparing with several related /spl Lambda/ and double-/spl Lambda/ systems, we have concluded that CPT is the mechanism for this interesting effect.
机译:原子相干效应可用于增强非线性光学过程的效率。特别是,多级系统中的非简并四波混频(NDFWM)最近因使用相干人口陷阱(CPT)或电磁感应透明性(EIT)来增强生成信号的效率而受到关注。一般而言,在精确的单光子共振条件下,线性吸收会与非线性信号产生竞争。但是,原则上,通过将系统准备为CPT或EIT状态,可以减少甚至消除线性吸收。我们报告了DF原子蒸气中几种多层结构的NDFWM的实验演示。在double / spl Lambda /系统之一中,实验观察到信号输出功率随泵浦功率而变化的异常行为,即随着泵浦功率的增加,生成的信号功率达到最大值。通过与几个相关的/ spl Lambda /和double- / spl Lambda /系统进行比较,我们得出的结论是CPT是产生这种有趣效果的机制。

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