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The Second Stellar Spectrum and the non-LTEProblem of the 2nd Kind

机译:第二种恒星谱和第二种的非拉提器

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This paper presents an overview of the radiative transfer problem of calculating the spectral line intensity and polarization that emerges from a (generally magnetized) astrophysical plasma composed of atoms and molecules whose excitation state is significantly influenced by radiative transitions produced by an anisotropic radiation field. The numerical solution of this non-LTE problem of the 2nd kind is facilitating the physical understanding of the second solar spectrum and the exploration of the complex magnetism of the extended solar atmosphere, but much more could be learned if high-sensitivity polarimeters were developed also for the present generation of night-time telescopes. Interestingly, I find that the population ratio between the levels of some resonance line transitions can be efficiently modulated by the inclination of a weak magnetic field when the anisotropy of the incident radiation is significant, something that could provide a new diagnostic tool in astrophysics.
机译:本文概述了计算光谱线强度和偏振的辐射转移问题,其出现由由原子和分子组成的(通常磁化的)天体物理等离子体的偏振,其激发状态受到各向异性辐射场产生的辐射转变的显着影响。第二种非LTE问题的数值解决方案是促进对第二种太阳能光谱的物理理解和展开延伸的太阳能气氛的复杂磁性的探索,但是如果也开发出高灵敏度的直率,则可以了解更多对于目前的夜间望远镜。有趣的是,当入射辐射的各向异性很大时,可以通过弱磁场的倾斜度来有效地调节一些共振线过渡之间的人口比率,这可以在天体物理学中提供新的诊断工具。

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