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首页> 外文期刊>The Astrophysical journal >THE EFFECT OF LARGE-SCALE MAGNETIC TURBULENCE ON THE ACCELERATION OF ELECTRONS BY PERPENDICULAR COLLISIONLESS SHOCKS
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THE EFFECT OF LARGE-SCALE MAGNETIC TURBULENCE ON THE ACCELERATION OF ELECTRONS BY PERPENDICULAR COLLISIONLESS SHOCKS

机译:大型磁湍流对无周向电击加速电子加速的影响

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We study the physics of electron acceleration at collisionless shocks that move through a plasma containing large-scale magnetic fluctuations. We numerically integrate the trajectories of a large number of electrons, which are treated as test particles moving in the time-dependent electric and magnetic fields determined from two-dimensional hybrid simulations (kinetic ions and fluid electron). The large-scale magnetic fluctuations effect the electrons in a number of ways and lead to efficient and rapid energization at the shock front. Since the electrons mainly follow along magnetic lines of force, the large-scale braiding of field lines in space allows the fast-moving electrons to cross the shock front several times, leading to efficient acceleration. Ripples in the shock front occurring at various scales will also contribute to the acceleration by mirroring the electrons. Our calculation shows that this process favors electron acceleration at perpendicular shocks. The current study is also helpful in understanding the injection problem for electron acceleration by collisionless shocks. It is also shown that the spatial distribution of energetic electrons is similar to in situ observations. The process may be important to our understanding of energetic electrons in planetary bow shocks and interplanetary shocks, and explaining herringbone structures seen in some type II solar radio bursts.
机译:我们研究了在无碰撞冲击下电子加速的物理过程,该碰撞通过包含大规模磁波动的等离子体运动。我们对大量电子的轨迹进行数值积分,这些轨迹被视为在二维混合模拟(运动离子和流体电子)确定的随时间变化的电场和磁场中移动的测试粒子。大规模的磁起伏以多种方式影响电子,并导致在冲击前沿有效而迅速地通电。由于电子主要跟随磁力线运动,因此空间中场线的大规模编织使快速移动的电子能够多次穿过激波前沿,从而实现有效的加速。各种形式的冲击波前部出现的波纹也会通过镜像电子来促进加速度。我们的计算表明,该过程有利于垂直冲击下的电子加速。当前的研究也有助于理解无碰撞冲击对电子加速的注入问题。还表明,高能电子的空间分布类似于原位观察。这个过程可能对我们理解行星弓激波和行星际激波中的高能电子,以及解释某些II型太阳无线电脉冲中出现的人字形结构很重要。

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