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Element Settling in the Solar Interior

机译:元素安放在太阳能室内

摘要

Element settling inside the Sun now becomes detectable from the comparison of the observed oscillation modes with the results of the theoretical models. This settling is due, not only to gravitation, but also to thermal diffusion and radiative acceleration (although this last effect is small compared to the two others). It leads to abundance variations of helium and heavy elements of spectroscopy, such variations lead to non-negligible modifications of the solar internal structure and evolution. Helioseismology is a powerful tool to detect such effects, and its positive results represent a great success for the theory of stellar evolution. Meanwhile, evidences are obtained that the element settling is slightly smoothed down, probably due to mild macroscopic motions below the convective zone. Additional observations of the abundances of both Solar $^7$Li and $^3$He lead to specific constraints on these particular motions.
机译:通过观察到的振荡模式与理论模型结果的比较,现在可以检测到太阳内部的元素沉降。这种沉降不仅是由于引力引起的,而且还归因于热扩散和辐射加速(尽管与其他两个相比,最后一个作用很小)。它导致氦的丰度变化和光谱学中的重元素,这种变化导致太阳内部结构和演化的变化不可忽略。地震学是检测此类影响的有力工具,其积极成果代表了恒星演化理论的巨大成功。同时,获得的证据表明元素沉降略有减弱,这可能是由于对流区下方的轻微宏观运动所致。对Solar $ ^ 7 $ Li和$ ^ 3 $ He的丰度的其他观察导致对这些特定运动的特定约束。

著录项

  • 作者

    Vauclair S;

  • 作者单位
  • 年度 1998
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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