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Energy transfer fromlower energy to higher-energy electrons mediated by whistler waves in the radiation belts

机译:能量转移fromlower能量的高能电子介导的惠斯勒波辐射带

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We study the problem of energy exchange between waves and particles, which leads to energization of the latter, in an unstable plasma typical of the radiation belts. The ongoing Van Allen Probes space mission brought this problem among the most discussed in space physics. A free energy which is present in an unstable plasma provides the indispensable condition for energy transfer from lower energy particles to higher-energy particles via resonant wave-particle interaction. This process is studied in detail by the example of electron interactions with whistler mode wave packets originated from lightning-induced emission. We emphasize that in an unstable plasma, the energy source for electron energization is the energy of other particles, rather than the wave energy as is often assumed. The way by which the energy is transferred from lower energy to higher-energy particles includes two processes that operate concurrently, in the same space-time domain, or sequentially, in different space-time domains, in which a given wave packet is located. In the first process, one group of resonant particles gives the energy to the wave. The second process consists in wave absorption by another group of resonant particles, whose energy therefore increases. We argue that this mechanism represents an efficient means of electron energization in the radiation belts.
机译:我们研究问题之间的能量交换波和粒子,导致通电后者的一个不稳定的等离子体的典型辐射带。太空任务中最使这个问题在空间物理讨论。出现在一个不稳定的等离子体提供了吗能量转移的必不可少的条件低能量粒子的高能粒子通过共振波粒相互作用。详细过程研究的例子电子波与惠斯勒的互动模式包起源于前往发射。等离子体,电子的能量来源通电是其他粒子的能量,而不是波能量通常假定。能量转移的的方式低能量的高能粒子包括两个进程同时操作,相同的时空领域,或顺序不同的时空领域,一个给定的波包。群粒子共振提供了能量波。由另一组共振吸收粒子的能量因此增加。认为这代表了一种有效机制电子激发辐射的方法腰带。

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