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Impact of rotation on the geometrical configurations of fossil magnetic fields

机译:旋转对化石磁场几何配置的影响

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The MiMeS project demonstrated that a small fraction of massive stars (around 7%) presents large-scale, stable, generally dipolar magnetic fields at their surface. These fields that do not present any evident correlations with stellar mass or rotation are supposed to be fossil remnants of the initial phases of stellar evolution. They result from the relaxation to MHD equilibrium states, during the formation of stable radiation zones, of initial fields resulting from a previous convective phase. In this work, we present new theoretical results, where we generalize previous studies by taking rotation into account. The properties of relaxed fossil fields are compared to those obtained when rotation is ignored'. Consequences for magnetic fields in the radiative envelope of rotating early-type stars and their stability are finally discussed.
机译:仪表仪器项目表明,巨大的大部分大部分巨大的恒星(约7%)呈现在其表面上的大规模稳定,通常是双极磁场。 这些不与恒星质量或旋转呈现任何明显相关性的字段应该是恒星演化初始阶段的化石残余。 它们是由于在形成稳定的辐射区域期间,在形成稳定的辐射区域的初始领域的初始领域,它们是由于先前对流阶段产生的初始领域。 在这项工作中,我们提出了新的理论结果,在那里我们通过旋转考虑到以前的研究。 将松弛化石场的特性与忽略旋转时获得的特性进行比较。 最后讨论了旋转早期恒星的辐射包膜中磁场的后果及其稳定性。

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