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Charged particle motion in electromagnetic fields varying moderately rapidly in space

机译:电磁场中的带电粒子运动在空间中变化迅速

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Electromagnetic fields are considered which vary on the space scale of the geometric mean of the Larmor radius and the much larger scale length of variation of the magnetic field lines. It is first shown that the magnetic moment is an adiabatic invariant, even though the usual arguments for its existence fail. The motion of the guiding center is then examined. For perpendicular drifts in magnitude comparable with the particle speed, the subsequent motion is dominated by electrostatic effects. The motion of particles along the field lines occurs on a much slower time scale than the perpendicular drift time scale. When the guiding center motion is approximately periodic in time, a second adiabatic invariant exists, the magnetic flux enclosed by the almost periodic orbit. When the perpendicular drift is small compared with the particle speed, the parallel motion and the perpendicular drift occur on the same, slow timescale.
机译:考虑了电磁场,该电磁场在拉莫尔半径的几何平均值的空间尺度上变化,并且磁场线变化的尺度长度更大。首先表明,磁矩是绝热的不变性,尽管通常关于其存在的论点失败了。然后检查引导中心的运动。对于与粒子速度相当的垂直漂移,随后的运动主要受静电作用的影响。粒子沿磁力线的运动比垂直漂移的时间尺度慢得多​​。当引导中心运动在时间上近似为周期性时,存在第二绝热不变量,该磁通被几乎周期性的轨道包围。当垂直漂移与粒子速度相比较小时,平行运动和垂直漂移会在相同的缓慢时间尺度上发生。

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