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首页> 外文期刊>The Astrophysical journal >POLARIZED SCATTERING OF LIGHT FOR ARBITRARY MAGNETIC FIELDS WITH LEVEL-CROSSINGS FROM THE COMBINATION OF HYPERFINE AND FINE STRUCTURE SPLITTINGS
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POLARIZED SCATTERING OF LIGHT FOR ARBITRARY MAGNETIC FIELDS WITH LEVEL-CROSSINGS FROM THE COMBINATION OF HYPERFINE AND FINE STRUCTURE SPLITTINGS

机译:超精细和精细结构分裂相结合产生的具有交叉能级的任意磁场的光的偏振散射

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Interference between magnetic substates of the hyperfine structure states belonging to different fine structure states of the same term influences the polarization for some of the diagnostically important lines of the Sun's spectrum, like the sodium and lithium doublets. The polarization signatures of this combined interference contain information on the properties of the solar magnetic fields. Motivated by this, in the present paper, we study the problem of polarized scattering on a two-term atom with hyperfine structure by accounting for the partial redistribution in the photon frequencies arising due to the Doppler motions of the atoms. We consider the scattering atoms to be under the influence of a magnetic field of arbitrary strength and develop a formalism based on the Kramers–Heisenberg approach to calculate the scattering cross section for this process. We explore the rich polarization effects that arise from various level-crossings in the Paschen–Back regime in a single scattering case using the lithium atomic system as a concrete example that is relevant to the Sun.
机译:属于同一术语的不同精细结构状态的超精细结构状态的磁性子状态之间的干扰会影响某些对太阳光谱具有重要诊断意义的谱线的极化,例如钠和锂双峰。这种组合干扰的极化特征包含有关太阳磁场特性的信息。因此,在本文中,我们通过考虑由于原子的多普勒运动引起的光子频率的部分重新分布,研究了具有超精细结构的两级原子的极化散射问题。我们认为散射原子受到任意强度磁场的影响,并根据Kramers-Heisenberg方法开发了形式主义,以计算该过程的散射截面。我们使用锂原子系统作为一个与太阳有关的具体例子,探索了在单个散射情况下,帕申-贝克(Paschen-Back)政权中各种能级交叉产生的丰富极化效应。

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