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首页> 外文期刊>The Astrophysical journal >A CATASTROPHIC FLUX ROPE IN A QUADRUPOLE MAGNETIC FIELD FOR CORONAL MASS EJECTIONS
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A CATASTROPHIC FLUX ROPE IN A QUADRUPOLE MAGNETIC FIELD FOR CORONAL MASS EJECTIONS

机译:四极磁场中的抛物线通量用于冠状大肠切除

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We propose a flux-rope model for the initiation of flare-associated CMEs. The model triggers the eruption with a catastrophic loss of MHD equilibrium and then requires magnetic reconnection to sustain the eruption's acceleration. We carry out 2.5-dimensional time-dependent resistive MHD simulations, choosing the initial state such that a flux rope embedded in a quadrupole field is attached to the solar surface; we then increase the magnetic flux of the rope by two different amounts, thus obtaining two cases. One exhibits a gradual acceleration of the flux rope, whereas the other produces an immediate acceleration. In both cases, the maximum speed of the flux rope is representative of a fast CME. Thus, we conclude that the flux-rope dynamics depends on the intensity of the emergent magnetic flux. Our model does reproduce the three-component structure of CMEs.
机译:我们提出了与火炬相关的CME引发的磁通-绳模型。该模型以MHD平衡的灾难性损失触发喷发,然后需要重新进行磁连接以维持喷发的加速度。我们进行了2.5维随时间变化的电阻MHD模拟,选择初始状态,使嵌​​入四极子场的磁通绳附着在太阳表面上。然后,我们将绳索的磁通量增加两个不同的量,从而得到两种情况。一个显示通量钢丝绳的逐渐加速,而另一个显示即时的加速度。在这两种情况下,磁通绳的最大速度代表了快速的CME。因此,我们得出的结论是,磁通量动力学取决于出现的磁通量的强度。我们的模型确实再现了CME的三部分结构。

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