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首页> 外文期刊>American Journal of Optics and Photonics >Coherent Nonlinear Resonances of Saturated Absorption at Transitions from the Ground ~1S_0 Atomic State in the Spectroscopy of Unidirectional Waves
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Coherent Nonlinear Resonances of Saturated Absorption at Transitions from the Ground ~1S_0 Atomic State in the Spectroscopy of Unidirectional Waves

机译:单向波光谱法在地下〜1S_0原子状态下饱和吸收的相干非线性谐振

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The shapes of the saturated absorption resonances at transitions from the ground ~1S_0 atom state in a gas medium in the field of two unidirectional waves are investigated both analytically and numerically. It is shown for the first time that the spectra of nonlinear resonances are formed by processes in the two-and three-level V-schemes resulting from the degeneracy of the upper P transition state, are qualitatively different at the resonant transition and transitions to the more excited atom states. It is established that the physical causes for differences of these spectra are due to the different degree of branching of the radiation from the excited to the ground state (the degree of openness) of transition. The degree of openness of transition determines the amount of contributions of coherent processes to the resonance shapes both in the system of two levels (coherent population beats) and three levels (nonlinear interference effect).
机译:在分析和数值上,研究了在两个单向波的场上的气体介质中的饱和吸收谐振的形状。首次示出了第一次通过由上P转变状态的退化产生的两级和三级V形式的过程形成非线性共振的光谱,在谐振过渡和转变的谐振过渡和转变时是定性不同的更兴奋的原子态。建立了这些光谱的差异的物理原因是由于从激发到过渡的地面(开放程度)的辐射的不同程度的分支。过渡的开放程度决定了两个水平(相干群体)和三个级别(非线性干扰效果)中的共振形状的相干过程的贡献的量。

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