首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Full Particle Simulation of Whistler-Mode Triggered Falling-Tone Emissions in the Magnetosphere
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Full Particle Simulation of Whistler-Mode Triggered Falling-Tone Emissions in the Magnetosphere

机译:完整的粒子模拟Whistler-Mode触发降调的排放磁气圈

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We perform a one-dimensional electromagnetic full particle simulation for triggered falling-tone emissions in the Earth's magnetosphere. The equatorial region of the magnetosphere is modeled with a parabolic magnetic field approximation. The short whistler-mode waves with a large amplitude are excited and propagate poleward from an artificial current oscillating with a constant frequency and amplitude. Following the excited waves, clear emissions are triggered with a falling frequency. Without the inhomogeneity of the background magnetic field, no triggered emission appears. The falling tone has several subpackets of amplitude and decreases the frequency in a stepwise manner. The positive resonant current formed by resonant electrons in the direction of the wave magnetic field clearly shows that an electron hill is formed in the phase space and causes the frequency decrease. The entrapping of the resonant electrons at the front of the packets and the decrease of the amplitude at the end of packets are essential for the generation of falling-tone emissions. Each wavefront of the emission has a strongly negative resonant current -J_E, which results in the wave growth. In the formation process of the resonant currents, we investigate the inhomogeneous factor S, which controls the nonlinear motion of the resonant electrons interacting with waves. The factor S consists of two terms, a frequency sweep rate and a gradient of the background magnetic field. The resonant current J_E in the wave packet changes its sign from negative to positive as the packet moves away from the equator, terminating the wave growth.
机译:我们执行一个一维电磁完整粒子模拟触发降调在地球的磁气圈的排放。赤道地区的磁气圈建模磁场与抛物线近似。短whistler-mode波大振幅和传播向极是兴奋人造电流振荡与一个常数频率和振幅。波,明确排放引发的频率下降。背景磁场,不触发排放出现。subpackets振幅和降低了频率逐步的方式。谐振电流形成的共振电子波磁场的方向清晰显示一个电子小山中形成相空间,导致频率减少。的共振电子的诱骗前面的数据包的减少振幅的包是必不可少的代的降调的排放。波前的排放有强烈的负面在波谐振电流-J_E,结果增长。电流,我们研究非齐次的因素年代,控制的非线性运动共振电子与波交互。因素包括两个方面,一个频率扫描率和背景磁场的梯度字段。包改变从消极到积极的迹象包远离赤道,终止增长浪潮。

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