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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Relativistic turning acceleration of resonant electrons by coherent whistler mode waves in a dipole magnetic field
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Relativistic turning acceleration of resonant electrons by coherent whistler mode waves in a dipole magnetic field

机译:偶极子磁场中相干惠斯勒模式波对共振电子的相对论转动加速。

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We report a very efficient process for accelerating high-energy electrons by coherent whistler mode waves in the Earth's dipole magnetic field, which we have found in our recent test particle simulations. The efficient acceleration process takes place for weakly relativistic seed electrons of a few hundred kiloelectronvolts. Under an assumption that the whistler mode wave packets are excited near the equatorial plane of the inner magnetosphere and propagate away from the equator, the acceleration process becomes irreversible. With a sufficiently long whistler mode wave packet of the order of 1 s, the energetic electrons are accelerated to a relativistic energy range of a few megaelectronvolts through a single resonant trapping process. We call this particular acceleration process relativistic turning acceleration (RTA), which could be a viable mechanism for increasing relativistic electron fluxes in the outer radiation belt. Necessary conditions for RTA are a relatively large amplitude of whistler mode waves, in the range of 50 to a few hundred picoteslas, and an initial kinetic energy of trapped electrons in the energy range of a few hundred kiloelectronvolts. The minimum energy of electrons accelerated by the RTA process and the maximum energy attained by it are derived analytically and verified by the test particle simulations.
机译:我们报告了一个非常有效的过程,它通过地球偶极子磁场中的相干惠斯勒模式波来加速高能电子,这在我们最近的测试粒子模拟中已经发现。对于几百千电子伏的弱相对论种子电子,会发生有效的加速过程。假设惠斯勒模式波包在内部磁层的赤道面附近被激发并远离赤道传播,则加速过程变得不可逆。使用足够长的1 s左右的惠斯勒模式波包,高能电子通过单个共振陷波过程被加速到几兆电子伏特的相对论能量范围。我们称这种特殊的加速过程为相对论转向加速(RTA),这可能是增加外部辐射带中相对论电子通量的可行机制。 RTA的必要条件是,在50至几百微微微微微微微微微微微微的范围的惠斯勒模式波,以及在几百千电子伏特的能量范围内,被捕获电子的初始动能。通过RTA过程加速的最小电子能量和通过RTA过程获得的最大能量通过分析得出,并通过测试粒子模拟进行验证。

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