论文标题

在安静的太阳的3D模拟中加速粒子梁

Accelerated particle beams in a 3D simulation of the quiet Sun

论文作者

Frogner, L., Gudiksen, B. V., Bakke, H.

论文摘要

观察性和理论证据表明,从X级耀​​斑到纳米氟的太阳大气中的各种尺寸的耀斑事件中产生了加速颗粒的光束。这些类型的颗粒中的当前模型在耀斑中假设一个孤立的1D气氛。可以通过3D辐射磁水动力学代码提供一个更现实的对加速颗粒进行建模的环境。在这里,我们提出了一个简单的模型,用于粒子加速度和在安静太阳大气的3D模拟的背景下,从对流带到电晕。然后,我们检查粒子梁引入的额外能量运输。通过检测磁拓扑变化来鉴定与磁重新连接相关的粒子加速度的位置。在每个位置,从当地条件中估算了加速粒子分布的参数。然后将粒子分布沿磁场传播,并计算由于与环境等离子体的库仑碰撞引起的能量沉积。我们发现粒子梁源自分布在整个电晕上的扩展加速区域。到达过渡区域后,它们会融合并产生穿透染色体的强烈加热链。在这些链中,光束加热始终在过渡区域底部以下主导导电加热。这表明粒子梁甚至在活动区域​​之外都会改变能量传输。

Observational and theoretical evidence suggest that beams of accelerated particles are produced in flaring events of all sizes in the solar atmosphere, from X-class flares to nanoflares. Current models of these types of particles in flaring loops assume an isolated 1D atmosphere. A more realistic environment for modelling accelerated particles can be provided by 3D radiative magnetohydrodynamics codes. Here, we present a simple model for particle acceleration and propagation in the context of a 3D simulation of the quiet solar atmosphere, spanning from the convection zone to the corona. We then examine the additional transport of energy introduced by the particle beams. The locations of particle acceleration associated with magnetic reconnection were identified by detecting changes in magnetic topology. At each location, the parameters of the accelerated particle distribution were estimated from local conditions. The particle distributions were then propagated along the magnetic field, and the energy deposition due to Coulomb collisions with the ambient plasma was computed. We find that particle beams originate in extended acceleration regions that are distributed across the corona. Upon reaching the transition region, they converge and produce strands of intense heating that penetrate the chromosphere. Within these strands, beam heating consistently dominates conductive heating below the bottom of the transition region. This indicates that particle beams qualitatively alter the energy transport even outside of active regions.

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