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Analytical treatment of particle motion in circularly polarized slab-mode wave fields

机译:圆偏振片模式波场粒子运动的分析处理

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Wave-particle interaction is a key process in particle diffusion in collisionless plasmas. We look into the interaction of single plasma waves with individual particles and discuss under which circumstances this is a chaotic process, leading to diffusion. We derive the equations of motion for a particle in the fields of a magnetostatic, circularly polarized, monochromatic wave and show that no chaotic particle motion can arise under such circumstances. A novel and exact analytic solution for the equations is presented. Additional plasma waves lead to a breakdown of the analytic solution and chaotic particle trajectories become possible. We demonstrate this effect by considering a linearly polarized, monochromatic wave, which can be seen as the superposition of two circularly polarized waves. Test particle simulations are provided to illustrate and expand our analytical considerations.
机译:波粒子相互作用是防撞等离子体中粒子扩散的关键过程。 我们研究单个等离子波与个体粒子的相互作用,并在这种情况下讨论这是一个混沌过程,导致扩散。 我们从磁化,圆偏振,单色波的场的粒子中导出运动的运动方程,并且表明在这种情况下不会出现混沌粒子运动。 提出了一种关于方程的新颖和精确的分析解决方案。 额外的等离子体波导致分析溶液的击穿,并且可以成为可能的混沌粒子轨迹。 我们通过考虑线性极化的单色波来证明这种效果,这可以被视为两个圆偏振波的叠加。 提供测试粒子模拟以说明和扩展我们的分析考虑因素。

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