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Effect of general loss-cone distribution function on electrostatic ion-cyclotron instability in an inhomogeneous plasma: particle aspect analysis

机译:一般损耗圆锥分布函数对非均质等离子体中静电离子回旋加速器不稳定性的影响:颗粒长宽比分析

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The electrostatic ion-cyclotron instability (EICI) in low β (ratio of plasma to magnetic pressure), anisotropic, inhomogeneous plasma is studied by investigating the trajectories of the particles using the general loss-cone distribution function (Dory-Guest-Harris type) for the plasma ions. In particular, the role of the loss-cone feature as determined by the loss-cone indices, in driving the drift-cyclotron loss-cone (DCLC) instability is analysed. It is found that for both long and short wavelength DCLC mode the loss-cone indices and the perpendicular thermal velocity affect the dispersion equation and the growth rate of the wave by virtue of their occurrence in the temperature anisotropy. The dispersion relation for the DCLC mode derived here using the particle aspect analysis approach and the general loss-cone distribution function considers the ion diamagnetic drift and also includes the effects of the parallel propagation and the ion temperature anisotropy. It is also found that the diamagnetic drift velocity due to the density gradient of the plasma ions in the presence of the general loss-cone distribution acts as a source of free energy for the wave and leads to the generation of the DCLC instability with enhanced growth rate. The particle aspect analysis approach used to study the EICI in inhomogeneous plasma gives a fairly good explanation for the particle energisation, wave emission by the wave–particle interaction and the results obtained using this particle aspect analysis approach are in agreement with the previous theoretical findings using the kinetic approach.
机译:通过使用一般的损耗锥分布函数(Dory-Guest-Harris型)研究粒子的轨迹,研究了低β(等离子体与磁压之比),各向异性,不均匀等离子体中的静电离子回旋加速器不稳定性(EICI)用于等离子体离子。特别地,分析了由损耗锥指数确定的损耗锥特征在驱动漂移回旋加速器损耗锥(DCLC)不稳定性中的作用。发现对于长波长和短波长DCLC模式,损耗锥指数和垂直热速度都因其在温度各向异性中的存在而影响波的色散方程和增长率。在这里使用粒子长宽比分析方法和一般的损失锥分布函数得出的DCLC模式的色散关系考虑了离子的反磁性漂移,并且还包括平行传播和离子温度各向异性的影响。还发现,由于存在一般的损失锥分布,等离子体离子的密度梯度引起的反磁漂移速度充当了波的自由能来源,并导致了DCLC不稳定的产生,并增强了生长率。用于研究非均质等离子体中的EICI的粒子长宽比分析方法为粒子激发,通过波-粒子相互作用产生的波发射提供了很好的解释,并且使用这种粒子长宽比分析方法获得的结果与先前的理论发现一致。动力学方法。

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