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New Evidence that Magnetoconvection Drives Solar-Stellar Coronal Heating

机译:磁电阻驱动太阳能恒星冠状加热的新证据

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How magnetic energy is injected and released in the solar corona, keeping it heated to several million degrees, remains elusive. Coronal heating generally increases with increasing magnetic field strength. From a comparison of a nonlinear force-free model of the three-dimensional active region coronal field to observed extreme-ultraviolet loops, we find that (1) umbra-to-umbra coronal loops, despite being rooted in the strongest magnetic flux, are invisible, and (2) the brightest loops have one foot in an umbra or penumbra and the other foot in another sunspot's penumbra or in unipolar or mixed-polarity plage. The invisibility of umbra-to-umbra loops is new evidence that magnetoconvection drives solar-stellar coronal heating: evidently, the strong umbral field at both ends quenches the magnetoconvection and hence the heating. Broadly, our results indicate that depending on the field strength in both feet, the photospheric feet of a coronal loop on any convective star can either engender or quench coronal heating in the loop's body.
机译:如何在太阳能电晕中注入并释放磁能,使其加热到数百万度,仍然难以捉摸。冠状加热通常随着磁场强度的增加而增加。从三维有源区冠状场的非线性力模型的比较观察到极端紫外线环,我们发现(1)umbra-to-Umbra冠状环,尽管源于最强的磁通量,是看不见的,(2)最亮的环,在另一只脚上有一只脚,另一只脚在另一个太阳黑子的半影或单极或混合极性Plage中。 Umbra-to-Umbra循环的隐形是新的证据,即磁电阻驱动太阳能恒星冠状加热:显然,两端的强大扬声器淬火并因此淬灭磁电阻并因此加热。广泛地,我们的结果表明,根据双脚的场强,任何对流星的冠状圈的射击脚可以在环的身体中发射或淬火冠状加热。

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