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Simulation studies of positron acceleration by a shock wave

机译:冲击波对正电子加速的仿真研究

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摘要

Using a relativistic electromagnetic particle code, we investigate positron acceleration in a, shock wave propagating obliquely to an external magnetic field B-0 in an electron-positron-ion plasma. After an encounter with a shock wave, some positrons are reflected and then accelerated along the magnetic field. They stay in the shock transition region and have velocities nearly parallel to B-0. Owing to the deformation of the wave profile, the acceleration call become stagnant. However, if the shock speed upsilon(sh) is close to c cos theta, where c is the speed of light and theta is the angle between the wave normal and B-0, the acceleration can start again. In this second stage acceleration, three types of motion are found. The first type is the same as that in the first stage. In the second type, particles gain energy from the electric field perpendicular to the magnetic field in association with large-radius gyromotion. The third type of motion resembles the curtate cycloid in the wave frame. We give theoretical estimates for the energy increase in these processes.
机译:使用相对论电磁粒子代码,我们研究了斜向传播到电子-正电子离子等离子体中的外部磁场B-0的冲击波中的正电子加速度。遇到冲击波后,一些正电子被反射,然后沿磁场加速。它们停留在冲击过渡区,其速度几乎与B-0平行。由于波轮廓的变形,加速声变得停滞。但是,如果冲击速度upsilon(sh)接近c cos theta,其中c是光速,theta是波法线与B-0之间的夹角,则加速度可以重新开始。在第二阶段加速中,发现了三种类型的运动。第一类与第一阶段中的相同。在第二种类型中,与大半径旋转相关联,粒子从垂直于磁场的电场中获取能量。第三类运动类似于波浪框架中的摆线摆线。我们给出了这些过程中能量增加的理论估计。

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