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首页> 外文期刊>The Astrophysical journal >The Origin of the Bimodal Distribution of Magnetic Fields in Early-type Stars
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The Origin of the Bimodal Distribution of Magnetic Fields in Early-type Stars

机译:早期恒星磁场双峰分布的起源

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In early-type stars a fossil magnetic field may be generated during the star formation process or be the result of a stellar merger event. Surface magnetic fields are thought to be erased by (sub)surface convection layers, which typically leave behind weak disordered fields. However, if the fossil field is strong enough it can prevent the onset of (sub)surface convection and so be preserved onto the main sequence. We calculate the critical field strength at which this occurs, and find that it corresponds well with the lower limit amplitude of observed fields in strongly magnetized Ap/Bp stars (≈300 G). The critical field strength is predicted to increase slightly during the main-sequence evolution, which could also explain the observed decline in the fraction of magnetic stars. This supports the conclusion that the bimodal distribution of observed magnetic fields in early-type stars reflects two different field origin stories: strongly magnetic fields are fossils fields inherited from star formation or a merger event, and weak fields are the product of ongoing dynamo action.
机译:在早期恒星中,可以在星形形成过程中产生化石磁场,或者是恒星合并事件的结果。认为表面磁场被(子)表面对流层擦除,这通常会留下弱无序区域。然而,如果化石场足够强,则可以防止(子)表面对流的开始,因此保留在主序列上。我们计算出发生这种情况的临界场强,并发现它对应于强磁化AP / BP恒星(≈300g)中观察字段的下限幅度。预测临界场强度在主序列的进化过程中略微增加,这也可以解释磁性恒星的级分的观察到的下降。这支持结论,早期恒星中观察到的磁场的双峰分布反映了两种不同的场地原点故事:强磁场是从星形成或合并事件中继承的化石场,弱字段是正在进行的发电机动作的产品。

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