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Shear Flows Driven by the Lorentz Force: An Energy Source for Coronal Mass Ejections and Flares

机译:由洛伦兹力驱动的剪切流量:冠状大规模喷射和耀斑的能源

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Shear flows have been prescribed in numerical models of coronal mass ejections and flares for decades as a way of energizing magnetic fields to erupt. While such shear flows have long been observed in the solar atmosphere, until recently, there was no compelling physical explanation for them. This paper will discuss the discovery that such shear flows are readily explained as a response to the Lorentz force that naturally occurs as bipolar magnetic fields emerge and expand in a gravitationally stratified atmosphere. It will be shown that shearing motions transport axial flux, and magnetic energy from the submerged portion of the field to the expanding portion, strongly coupling the solar interior to the corona. This physical process explains active region shear flows and why the magnetic field is found to be nearly parallel to photospheric polarity inversion lines where prominences form. Finally, shear flows driven by the Lorentz force are shown to produce a loss of equilibrium and eruption in magnetic arcades and flux ropes offering a convincing explanation for CMEs and flares.
机译:剪切流已经在冠状大气射血的数值模型中规定,并且数十年的耀斑作为激励磁场爆发的方式。虽然在太阳能大气中长期观察到这种剪切流量,直到最近,它们对它们没有引人注目的物理解释。本文将讨论这种剪切流量容易被解释为对自然发生的洛伦兹力的响应作为双极磁场出现并在重力分层的气氛中膨胀的响应。结果表明,剪切动作将轴向通量传送到从现场浸没的部分到扩展部分的磁能,强烈耦合到电晕的太阳内部。该物理过程解释了有源区剪切流量以及为什么发现磁场几乎平行于突出形式的光学极性反转线。最后,被洛伦兹力驱动的剪切流程被示出为在磁弧槽和磁弧绳和磁通绳中产生的损失和漏洞,为CME和耀斑提供了令人信服的解释。

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