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Models of Resonant Wave-Particle Interactions

机译:共振波粒相互作用的模型

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摘要

Radiation belt electrons are strongly affected by resonant interactions with cyclotronresonant waves. For broad band, small amplitude waves the interactions are well described by quasi-linear diffusion in pitch angle and energy, but coherent, large amplitude waves such as strong whistler mode chorus call for a different treatment. The standard nonlinear framework reduces the problem to that of a classical pendulum. This picture has generally been confirmed by many numerical simulations, but recent studies have uncovered additional, complex behavior, not captured by the pendulum model, for particles with low pitch angle. We show that avoiding a commonly made approximation leads to a more general but still tractable "second fundamental model" Hamiltonian, which involves not one but two regions of phase trapping. We analyze its phase portraits in detail, and perform representative test particle simulations with slowly changing parameters. We find that the trajectories encompass traditional phase bunching and phase trapping as well as additional behavior best understood using the new model.
机译:辐射带电子强烈影响共振相互作用cyclotronresonant波。相互作用是由准线性描述在螺旋角和能量扩散,但连贯的,等大型振幅波强惠斯勒齐声呼吁一个不同的方式治疗。减少了一个经典的问题钟摆。证实了许多数值模拟,但是最近的研究发现另外,复杂行为,而不是被摆模型,较低的粒子螺距角。避免常见的近似导致更普遍的但仍然容易处理的“第二基本模式”哈密顿,包括不是一个而是两个地区捕获的阶段。详细分析其相图执行代表测试粒子模拟慢慢地改变参数。聚束轨迹包含传统的阶段和相位捕获以及额外的行为最好的理解使用新的模型。

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