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Magnetic Relaxation and Particle Acceleration in a Flaring Twisted Coronal Loop

机译:喇叭形扭曲冕环中的磁弛豫和粒子加速

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摘要

In the present work we aim to study particle acceleration in twisted coronal loops. For this purpose, an MHD model of magnetic reconnection in a linearly unstable twisted magnetic fluxtube is considered. Further, the electric and magnetic fields obtained in the MHD simulations are used to calculate proton and electron trajectories in the guiding-centre approximation. It is shown that particle acceleration in such a model is distributed rather uniformly along the coronal loop and the high-energy population remains generally neutral. It also follows from the model that the horizontal cross-section of the volume occupied by high-energy particles near the loop footpoints increases with time, which can be used as an observational proxy.
机译:在当前的工作中,我们旨在研究扭曲的日冕环中的粒子加速度。为此,考虑了线性不稳定的扭曲磁通量管中磁连接的MHD模型。此外,在MHD模拟中获得的电场和磁场可用于计算引导中心近似下的质子和电子轨迹。结果表明,在这种模型中,粒子加速度沿日冕环相当均匀地分布,并且高能粒子总体上保持中性。从模型中还可以得出,高能粒子在环路脚点附近占据的体积的水平横截面随时间增加,可以用作观测代理。

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