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The evolution of magnetic hot massive stars: Implementation of the quantitative influence of surface magnetic fields in modern models of stellar evolution

机译:磁热质恒星的演变:现代恒星演化模型中表面磁场定量影响的实现

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Large-scale dipolar surface magnetic fields have been detected in a fraction of OB stars, however only few stellar evolution models of massive stars have considered the impact of these fossil fields. We are performing 1D hydrodynamical model calculations taking into account evolutionary consequences of the magnetospheric-wind interactions in a simplified parametric way. Two effects are considered: i) the global mass-loss rates are reduced due to mass-loss quenching, and ii) the surface angular momentum loss is enhanced due to magnetic braking. As a result of the magnetic mass-loss quenching, the mass of magnetic massive stars remains close to their initial masses. Thus magnetic massive stars - even at Galactic metallicity - have the potential to be progenitors of 'heavy' stellar mass black holes. Similarly, at Galactic metallicity, the formation of pair instability supernovae is plausible with a magnetic progenitor.
机译:在一部分OB恒星中检测到大规模的偶极表面磁场,但大量恒星的恒星演化模型只有很少的恒星演化模型考虑了这些化石田的影响。考虑到简化参数方式的磁体 - 风相互作用的进化后果,我们正在执行1D流体动力学模型计算。考虑了两种效果:i)由于质量损失淬火而降低了全局质量损失率,并且II)由于磁动制动,表面角动量损失增强。由于磁性质量损耗淬火,磁性大量恒星的质量保持接近其初始质量。因此,磁性巨大的恒星 - 即使在银河系中,也有可能成为“重”恒星块状黑洞的祖细胞。类似地,在银河金属化上,对成对不稳定性超胃部的形成是可粘附的磁性祖细胞。

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