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A parametric study for the generation of ion Bernstein modes from a discrete spectrum to a continuous one in the inner magnetosphere. II. Particle-in-cell simulations

机译:在内部磁层中从离散光谱到连续光谱生成离子伯恩斯坦模的参数研究。二。粒子模拟

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In this paper, we perform one-dimensional particle-in-cell simulations to investigate the properties of perpendicular magnetosonic waves in a plasma system consisting of three components: cool electrons, cool protons, and tenuous ring distribution protons, where the waves are excited by the tenuous proton ring distribution. Consistent with the linear theory, the spectra of excited magnetosonic waves can change from discrete to continuous due to the overlapping of adjacent unstable wave modes. The increase of the proton to electron mass ratio, the ratio of the light speed to the Alfven speed, or the concentration of protons with a ring distribution tends to result in a continuous spectrum of magnetosonic waves, while the increase of the ring velocity of the tenuous proton ring distribution leads to a broader one, but with a discrete structure. Moreover, the energization of both cool electrons and protons and the scattering of ring distribution protons due to the excited magnetosonic waves are also observed in our simulations, which cannot be predicted by the linear theory. Besides, a thermalized proton ring distribution may lead to the further excitation of several lower discrete harmonics with their frequencies about several proton gyrofrequencies. (C) 2016 AIP Publishing LLC.
机译:在本文中,我们执行一维单元内粒子模拟,以研究由三部分组成的等离子体系统中垂直磁声波的性质:冷电子,冷质子和弱环分布质子,其中的波被激发质子环稀疏分布。与线性理论一致,由于相邻不稳定波模式的重叠,激发的磁声波的频谱可以从离散变为连续。质子与电子质量比的增加,光速与Alfven速度的比或具有环分布的质子浓度的增加往往会导致连续的磁声波谱,而磁环的环速度则增加质子环的连续分布导致其分布较宽,但结构离散。此外,在我们的模拟中还观察到了冷电子和质子的激发以及由于磁磁激发波而引起的环分布质子的散射,这是线性理论无法预测的。此外,热化的质子环分布可能导致其频率大约为几个质子回旋频率的几个较低的离散谐波的进一步激励。 (C)2016 AIP出版有限责任公司。

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