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Properties of the generation process of whistler-mode chorus emissions by electron hybrid simulations

机译:电子混合模拟惠斯勒模式合唱排放的生成过程的性质

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We investigate properties of the generation process of whistler-mode chorus emissions by a series of self-consistent electron hybrid code simulations. Whistler-mode chorus are narrowband electromagnetic emissions observed mostly on the dawn side of the Earth's magnetosphere as a group of coherent wave elements often consisting rising tones. Recent simulation studies revealed that chorus elements with rising tones are successively generated near the magnetic equator and undergo further nonlinear growth through their propagation away from the equator [1]. First, we study the amplitude dependence of frequency sweep-rates of rising-tone chorus elements by conducting numerical experiments with different initial number densities of energetic electrons at the magnetic equator [2]. The simulation results clarify a close relationship between frequency sweep-rates and wave amplitudes of chorus elements. The existence of an amplitude threshold in generating chorus is also quantitatively revealed. Next, we have carried out numerical experiments with different spatial inhomogeneities of the background magnetic field in the simulation system for the same initial condition of energetic electrons at the magnetic equator [3]. The simulation results reveal that the spectral characteristics of chorus significantly vary depending on the magnetic field inhomogeneity. While we have reproduced distinct chorus with rising tones in the simulation of the moderate inhomogeneity, we find that distinct chorus did not occur for large inhomogeneity cases and that the simulation of the smallest inhomogeneity reproduced excitation of broadband hiss-like emission whose amplitudes are comparable to discrete chorus elements. The broadband hiss-like emission consists of many wave elements with rising tones nonlinearly triggered in the region close to the magnetic equator. The small spatial inhomogeneity of the background magnetic field results in the small threshold amplitude for the nonlinear wave g- owth and allows the triggering process of rising tone elements to emerge easily in the equatorial region of the magnetosphere. We show that the simulation results obtained by the present study are consistent with estimations of both frequency sweep-rates and threshold amplitudes predicted by the nonlinear wave-growth theory [4-6] and that nonlinear wave-particle interactions play essential roles in the generation process of rising tone chorus emissions.
机译:我们调查由一系列自洽的电子杂化代码模拟的哨声模式合唱排放物的产生过程的性质。惠斯勒模式合唱是窄带的电磁辐射主要观察到对地球磁层的黎明侧作为一组相干波元件通常由上升音调。最近模拟研究揭示了与音调上升该合唱元件磁赤道附近连续产生,并通过其传播从赤道[1]进行进一步的非线性增长了。首先,我们研究通过在磁赤道[2]导电数值实验与高能电子的不同的初始数密度的上升音调合唱元件的频率扫描率的幅度的依赖。仿真结果澄清频率扫描率和合唱元件的波振幅之间的密切关系。在生成合唱幅度阈值的存在还定量地显现出来。接下来,我们已在磁性赤道[3]进行数值试验与在仿真系统的高能电子的相同的初始条件下的背景磁场的不同的空间不均匀性。仿真结果表明,合唱的光谱特性依赖于磁场非均匀性而显着变化。虽然我们转载独特的合唱与适度不均匀性的模拟上升音调,我们发现,不同的合唱团并没有为大的不均匀性病例发生,并且最小不均匀性的模拟再现宽带激发嘶嘶声般涌出,其幅度可媲美离散的合唱元件。宽带嘶状发射由具有上升音在该区域靠近磁赤道非线性触发许多波元件。在小阈值幅度的背景磁场结果的小的空间不均匀的非线性波动G-零增长,并允许上声元件的触发过程在磁层的赤道区域容易出现。我们表明,由本研究中获得的模拟结果是一致的与由非线性波生长理论[4-6]和非线性波 - 粒子相互作用预测两者的频率扫描率和阈值振幅的估计中产生发挥重要作用上声合唱排放的处理。

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