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Modelling of mercury isotope separation in CP stellar atmospheres: Results and problems

机译:CP恒星大气中汞同位素分离的模型:结果和问题

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Formation of anomalous isotope abundances in the atmospheres of chemically peculiar (CP) stars can be explained by light-induced drift (LID). This effect is additional to the radiative acceleration and appears due to systematic asymmetry of radiative flux in partly overlapping isotopic spectral line profiles. LID causes levitation of an isotope with a red-shifted spectral line and sinking of an isotope with a blue-shifted line, generating thus diffusive separation of isotopes. We have studied diffusion of mercury as a typical well-studied isotope-rich heavy metal. Our model computations show that in mercury-rich quiescent atmospheres of CP stars LID causes levitation of the heavier mercury isotopes and sinking of the lighter ones. Precise quantitative modelling of the process of isotope separation demands very high-resolution computations and the high-precision input data, including data on hyperfine and isotopic splitting of spectral lines, adequate line profiles and impact cross-sections. Presence of microturbulence and weak stellar winds can essentially reduce the effect of radiative-driven diffusion.
机译:化学特异(CP)恒星大气中异常同位素丰度的形成可以通过光致漂移(LID)来解释。这种影响是辐射加速度的附加影响,由于部分重叠的同位素光谱线轮廓中的辐射通量存在系统性不对称性而出现。 LID引起具有红移谱线的同位素悬浮和具有蓝移谱线的同位素沉没,从而产生同位素的扩散分离。我们已经研究了汞的扩散,它是一种经过充分研究的典型的富含同位素的重金属。我们的模型计算表明,在CP恒星富含汞的静态大气中,LID导致了较重的汞同位素的悬浮和更轻的同位素的沉没。同位素分离过程的精确定量建模需要非常高分辨率的计算和高精度输入数据,包括有关谱线的超精细和同位素分裂,足够的谱线分布和撞击截面的数据。微湍流和弱恒星风的存在可以从根本上减少辐射驱动扩散的影响。

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