论文标题

与临时音调角散射的磁重新连接中的颗粒加速度

Particle Acceleration in Magnetic Reconnection with Ad hoc Pitch-angle Scattering

论文作者

Johnson, Grant, Kilian, Patrick, Guo, Fan, Li, Xiaocan

论文摘要

磁重新连接期间的颗粒加速度是空间,太阳和天体物理等离子体的长期主题。磁重新连接的最新3D粒子模拟表明,由于3D场线混乱,颗粒可以离开通量绳索,使颗粒可以访问其他加速位点,通过费米加速获得更多的能量,并开发施加巨型能量分布。在传统的2D模拟中,这种3D效应不存在,在传统的2D模拟中,由于粒子在磁场之间的限制动作,粒子被人为地局限于磁岛。但是,对于大多数研究,完整的3D模拟非常昂贵。在这里,我们试图通过将临时音调角散射引入一小部分粒子来重现2D模拟。我们表明,散射的颗粒能够从2D岛运输并实现更有效的费米加速度,从而显着增加了能量颗粒通量。我们还研究散射频率如何影响非热粒子光谱。这项研究有助于实现磁重新连接中粒子加速度的完整图片。

Particle acceleration during magnetic reconnection is a long-standing topic in space, solar and astrophysical plasmas. Recent 3D particle-in-cell simulations of magnetic reconnection show that particles can leave flux ropes due to 3D field-line chaos, allowing particles to access additional acceleration sites, gain more energy through Fermi acceleration, and develop a power-law energy distribution. This 3D effect does not exist in traditional 2D simulations, where particles are artificially confined to magnetic islands due to their restricted motions across field lines. Full 3D simulations, however, are prohibitively expensive for most studies. Here, we attempt to reproduce 3D results in 2D simulations by introducing ad hoc pitch-angle scattering to a small fraction of the particles. We show that scattered particles are able to transport out of 2D islands and achieve more efficient Fermi acceleration, leading to a significant increase of energetic particle flux. We also study how the scattering frequency influences the nonthermal particle spectra. This study helps achieve a complete picture of particle acceleration in magnetic reconnection.

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