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首页> 外文期刊>Astronomy and astrophysics >Particle dynamics in a non-flaring solar active region model
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Particle dynamics in a non-flaring solar active region model

机译:非扩张太阳活动区域模型中的粒子动力学

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摘要

Aims. The aim of this work is to investigate and characterise particle behaviour in an (observationally-driven) 3D magnetohydrodynamic (MHD) model of the solar atmosphere above a slowly evolving, non-flaring active region. Methods. We use a relativistic guiding-centre particle code to investigate the behaviour of selected particle orbits, distributed throughout a single snapshot of the 3D MHD simulation. Results. Two distinct particle acceleration behaviours are recovered, which affect both electrons and protons: (i) direct acceleration along field lines and (ii) tangential drifting of guiding centres with respect to local magnetic field. However, up to 40% of all particles actually experience a form of (high energy) particle trap, because of changes in the direction of the electric field and unrelated to the strength of the magnetic field; such particles are included in the first category. Additionally, category (i) electron and proton orbits undergo surprisingly strong acceleration to non-thermal energies ( ? 42 MeV), because of the strength and extent of super-Dreicer electric fields created by the MHD simulation. Reducing the electric field strength of the MHD model does not significantly affect the efficiency of the (electric field-based) trapping mechanism, but does reduce the peak energies gained by orbits. We discuss the implications for future experiments, which aim to simulate non-flaring active region heating and reconnection.
机译:目的这项工作的目的是研究和表征一个在缓慢发展的,无焰活动区域上方的太阳大气的(观测驱动)3D磁流体动力学(MHD)模型中的粒子行为。方法。我们使用相对论的指导中心粒子代码来研究选定粒子轨道的行为,这些行为分布在3D MHD模拟的单个快照中。结果。恢复了两种不同的粒子加速行为,它们同时影响电子和质子:(i)沿磁力线的直接加速和(ii)导向中心相对于局部磁场的切向漂移。但是,由于电场方向的变化且与磁场强度无关,因此多达40%的粒子实际上会经历(高能)粒子陷阱的形式。这样的颗粒被包括在第一类中。另外,由于MHD模拟产生的超Dreicer电场的强度和程度,第(i)类电子和质子轨道经历了非热能(?42 MeV)的惊人强加速。降低MHD模型的电场强度不会显着影响(基于电场的)俘获机制的效率,但是会降低轨道获得的峰值能量。我们讨论了对未来实验的意义,该实验旨在模拟无焰活动区域的加热和重新连接。

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