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首页> 外文期刊>The Astrophysical journal >Turbulence and Particle Acceleration in Collisionless Magnetic Reconnection: Effects of Temperature Inhomogeneity across Pre-reconnection Current Sheet
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Turbulence and Particle Acceleration in Collisionless Magnetic Reconnection: Effects of Temperature Inhomogeneity across Pre-reconnection Current Sheet

机译:无碰撞磁重连中的湍流和粒子加速度:预重连电流表上温度不均匀性的影响

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Magnetic reconnection is an important process in various collisionless plasma environments because it reconfigures the magnetic field and releases magnetic energy to accelerate charged particles. Its dynamics depend critically on the properties of the pre-reconnection current sheet. One property in particular, cross-sheet temperature inhomogeneity, which is ubiquitous throughout the heliosphere, has been shown to increase reconnection outflow speed, energy conversion efficiency, and secondary island formation rate using two-dimensional particle-in-cell simulations. Here we expand upon these findings, considering two cases with a long, thin current sheet, one with homogeneous temperature and one with inhomogeneous temperature across the current sheet. In the inhomogeneous temperature case, numerous secondary islands form continuously, which increases current sheet turbulence (well-developed cascade power spectra) at large wavenumbers. Current density, energy conversion, dissipation, and acceleration of high-energy particles are also enhanced relative to the homogenous temperature case. Our results suggest that inhomogeneous temperature profiles, which are realistic, need to be incorporated into studies of turbulence and particle acceleration in collisionless magnetic reconnection.
机译:在各种无碰撞等离子体环境中,磁重新连接是重要的过程,因为它会重新配置磁场并释放磁能以加速带电粒子。它的动态特性主要取决于预连接电流表的特性。特别是一种特性,即跨层温度不均匀性(在整个太阳圈中普遍存在)已显示出使用二维单元格内模拟提高了重新连接的流出速度,能量转换效率和次级岛形成率。在这里,我们对这些发现进行了扩展,考虑了两种情况:电流表薄而薄,一种情况下温度均匀,另一种情况下电流表温度不均匀。在温度不均匀的情况下,许多次级岛会连续形成,这会增加大波数下的电流板湍流(发达的级联功率谱)。相对于均匀温度情况,高能量粒子的电流密度,能量转换,耗散和加速也得到增强。我们的研究结果表明,需要将不均匀的温度分布图逼真地纳入无碰撞磁重连接中的湍流和粒子加速度研究中。

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