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首页> 外文期刊>Solar Physics >Particle Interactions with Single or Multiple 3D Solar Reconnecting Current Sheets
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Particle Interactions with Single or Multiple 3D Solar Reconnecting Current Sheets

机译:与单个或多个3D太阳重新连接电流表的粒子相互作用

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The acceleration of charged particles (electrons and protons) in flaring solar active regions is analyzed using numerical experiments. The acceleration is modeled as a stochastic process taking place by the interaction of the particles with local magnetic reconnection sites via multiple steps. Two types of local reconnecting topologies are studied: the Harris-type and the X-point. A formula for the maximum kinetic energy gain in a Harris-type current sheet, found in a previous work of ours, fits well the numerical data for a single step of the process. A generalization is then given approximating the kinetic energy gain through an X-point. In the case of the multiple step process, in both topologies the kinetic energy distribution of the particles is found to acquire a practically invariant form after a small number of steps. This tendency is interpreted theoretically. Other characteristics of the acceleration process are given, such as the mean acceleration time and the pitch angle distributions of the particles.
机译:使用数值实验分析了耀斑的太阳活动区域中带电粒子(电子和质子)的加速度。加速度被建模为随机过程,该过程是通过多个步骤使粒子与局部磁重连接部位相互作用而发生的。研究了两种类型的局部重新连接拓扑:Harris型和X点。在我们以前的工作中找到的哈里斯型电流表中最大动能增益的公式,很适合该过程的单个步骤的数值数据。然后给出通过X点近似的动能增益的一般化。在多步工艺的情况下,在两种拓扑中,发现粒子的动能分布在经过很少的步骤后就获得了几乎不变的形式。从理论上解释了这种趋势。给出了加速过程的其他特征,例如平均加速时间和粒子的俯仰角分布。

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