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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Energetic Electron Scattering due to Whistler Mode Chorus Waves Using Realistic Magnetic Field and Density Models in Jupiter's Magnetosphere
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Energetic Electron Scattering due to Whistler Mode Chorus Waves Using Realistic Magnetic Field and Density Models in Jupiter's Magnetosphere

机译:充满活力的电子散射由于惠斯勒模式使用现实的磁场和合唱波在木星的磁层密度模型

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摘要

We evaluate energetic electron scattering in pitch angle and energy using realistic magnetic field and density models due to whistler mode chorus waves in Jupiter's magnetosphere and study their dependences on various wave and background parameters. We calculate the bounce-averaged diffusion coefficients by considering the latitudinal variation of total electron density and ambient magnetic field intensity, using the VIP4 internal magnetic field and CAN current sheet model. The electron phase space density evolution due to chorus waves is simulated atMshell of 10, using the central wave frequency at 0.1fce and wave amplitude of 30 pT. Under the typical values of the ratio between the plasma frequency and electron cyclotron frequency, chorus waves could cause fast pitch angle scattering loss of energetic electrons from tens to several hundred keV in several hours, and gradual acceleration of relativistic electrons at several MeV in several days. The electron pitch angle scattering at ~500 keV and the acceleration at several MeV are both enhanced using the latitudinally varying density and VIP4 + CAN magnetic field model compared to the electron evolution using the constant density and dipole magnetic field model. Our sensitivity study indicates that the electron scattering at higher energy is caused by waves at lower frequencies or in a lower-density background plasma, and the scattering is faster for waves at smaller wave normal angles. The electron diffusion is mainly caused by waves at lower latitudes, but the waves at higher latitudes (>30°) contribute to the electron loss at higher energies (>2 MeV).
机译:我们评估高能电子散射角和能源使用现实的磁场由于惠斯勒模式合唱和密度模型在木星的磁气圈和研究他们依赖性在各种波和背景参数。通过考虑扩散系数纬度的总电子密度的变化和周围的磁场强度,使用VIP4内部磁场和电流表模型。由于合唱海浪模拟进化atMshell 10,使用中央波频率0.1 fce考试和波振幅下30 pT。典型的等离子体之间的比例值频率和电子回旋频率,合唱波可能会导致快速螺旋角高能电子的散射损失数万几个小时到数百keV,逐渐加速的相对论性电子几兆电子伏在几天。~ 500 keV角散射和加速度在几兆电子伏都加强使用纬度的不同密度和VIP4 +磁场模型相比,电子使用常数密度和偶极子进化磁场模型。表明电子散射在更高较低的频率或能量波造成的在一个短的背景等离子体,散射波的小波快正常的角度。在低纬度地区造成的波浪,但海浪在高纬度地区(> 30°)做出贡献电子在更高的能量损失(> 2兆电子伏)。

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