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Master equation theory applied to the redistribution of polarized radiation in the weak radiation field limit - III. Theory for the multilevel atom

机译:主方程理论适用于弱辐射场极限-III中的极化辐射的重新分布。多能级原子理论

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Context. We discuss the case of lines formed by scattering, which comprises both coherent and incoherent scattering. Both processes contribute to form the line profiles in the so-called second solar spectrum, which is the spectrum of the linear polarization of such lines observed close to the solar limb. However, most of the lines cannot be simply modeled with a two-level or two-term atom model, and we present a generalized formalism for this purpose. Aims. The aim is to obtain a formalism that is able to describe scattering in line centers (resonant scattering or incoherent scattering) and in far wings (Rayleigh/Raman scattering or coherent scattering) for a multilevel and multiline atom. Methods. The method is designed to overcome the Markov approximation, which is often performed in the atom-photon interaction description. The method was already presented in the two first papers of this series, but the final equations of those papers were for a two-level atom. Results. We present here the final equations generalized for the multilevel and multiline atom. We describe the main steps of the theoretical development, and, in particular, how we performed the series development to overcome the Markov approximation. Conclusions. The statistical equilibrium equations for the atomic density matrix and the radiative transfer equation coefficients are obtained with line profiles. The Doppler redistribution is also taken into account because we show that the statistical equilibrium equations must be solved for each atomic velocity class.
机译:上下文。我们讨论了由散射形成的线的情况,其中包括相干和不相干散射。这两个过程都有助于在所谓的第二太阳光谱中形成线轮廓,该第二太阳光谱是在靠近太阳肢处观察到的这种线的线性极化的光谱。但是,大多数直线不能简单地用两级或二项原子模型建模,为此我们提出了一种广义的形式主义。目的目的是获得一种形式主义,该形式主义能够描述多级和多线原子在线心(共振散射或非相干散射)和远翼中的散射(瑞利/拉曼散射或相干散射)。方法。该方法旨在克服通常在原子-光子相互作用描述中执行的马尔可夫近似。该方法已经在本系列的前两篇论文中介绍过,但是这些论文的最终方程是针对两级原子的。结果。在这里,我们介绍了针对多级和多线原子的最终方程。我们描述了理论发展的主要步骤,尤其是我们如何进行级数发展以克服马尔可夫近似。结论。通过线轮廓获得原子密度矩阵的统计平衡方程和辐射传递方程系数。还考虑了多普勒重新分配,因为我们表明必须为每个原子速度类求解统计平衡方程。

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