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A prevalence of dynamo-generated magnetic fields in the cores of intermediate-mass stars

机译:中等质量恒星核心中发电机产生的磁场的普遍性

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摘要

Magnetic fields play a part in almost all stages of stellar evolution. Most low-mass stars, including the Sun, show surface fields that are generated by dynamo processes in their convective envelopes. Intermediate-mass stars do not have deep convective envelopes, although 10 per cent exhibit strong surface fields that are presumed to be residuals from the star formation process. These stars do have convective cores that might produce internal magnetic fields, and these fields might survive into later stages of stellar evolution, but information has been limited by our inability to measure the fields below the stellar surface. Here we report the strength of dipolar oscillation modes for a sample of 3,600 red giant stars. About 20 per cent of our sample show mode suppression, by strong magnetic fields in the cores, but this fraction is a strong function of mass. Strong core fields occur only in red giants heavier than 1.1 solar masses, and the occurrence rate is at least 50 per cent for intermediate-mass stars (1.6–2.0 solar masses), indicating that powerful dynamos were very common in the previously convective cores of these stars.
机译:磁场几乎参与了恒星演化的所有阶段。大多数低质量恒星,包括太阳,在对流包层中都显示出由发电机过程产生的表面场。中等质量恒星没有较深的对流包络线,尽管有10%的恒星具有很强的表面场,据推测这是恒星形成过程的残余。这些恒星确实具有可能产生内部磁场的对流核,并且这些场可能会保留到恒星演化的后期阶段,但是由于我们无法测量恒星表面以下的场,因此信息受到了限制。在这里,我们报告了3,600个红色巨星样本的偶极子振荡模式的强度。我们的样本中约有20%表现出被铁心中的强磁场抑制的模式,但是这一部分是质量的强大函数。强核心场仅在重于1.1太阳质量的红色巨星中发生,中等质量恒星(1.6–2.0太阳质量)的发生率至少为50%,这表明强力发电机在以前的对流核中非常普遍。这些星星。

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