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Quasilinear dynamics of a cloud of hot electrons propagating through a plasma with decreasing density and temperature

机译:在密度和温度降低的情况下,通过等离子体传播的热电子云的拟线性动力学

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The effects of plasma inhomogeneities on the propagation of a cloud of hot electrons through a cold background plasma and generation of Langmuir waves are investigated using numerical simulations of the quasilinear equations. It is found that in a plasma with decreasing density the quasilinear relaxation of the electron distribution in velocity space is accelerated and the levels of the generated Langmuir waves are enhanced. The magnitude of the induced emission rate is increased and its maximum value moves to lower velocities. Due to density gradient the height of plateau shows an increase at small distances and a corresponding decrease at large distances. It is also found that in a plasma with decreasing temperature, the relaxation of the beam is retarded, the spectral density of Langmuir waves is broadened, and the height of the plateau decreases below its value in a uniform plasma. In the presence of both density and temperature gradients, at given position, the height and upper boundary of the plateau and the level of Langmuir waves are all increased at small velocities. The spatial expansion of the beam is increased by the plasma inhomogeneities, but its average velocity of propagation decreases. Initially, at a given position, the velocity at the upper boundary of the plateau is smaller in the presence of the density gradient than in the uniform plasma but the reverse is true at longer times. Due to temperature gradient, at large times and small distances, the upper boundary of the plateau is increased above its value in the uniform plasma. Because of fast relaxation, the value of the lower boundary of the plateau in the plasma with decreasing density is always less than its value in the uniform plasma. It is found that the local velocity of the beam decreases when the density gradient is present. The local velocity spread of the beam remains unchanged during the propagation of the beam in the uniform plasma, but increases in the presence of inhomogeneities.
机译:使用准线性方程的数值模拟研究了等离子体不均匀性对热电子云通过冷本底等离子体的传播和朗缪尔波的产生的影响。发现在密度降低的等离子体中,速度空间中电子分布的准线性弛豫得到加速,并且所产生的朗缪尔波的水平得到增强。感应发射率的幅度增加,其最大值移至较低的速度。由于密度梯度,高原的高度在小距离处显示出增加,而在大距离处显示出相应的减小。还发现在温度降低的等离子体中,束的弛豫被延迟,朗缪尔波的光谱密度变宽,并且在均匀等离子体中,平台的高度降低到其值以下。在既有密度梯度又有温度梯度的情况下,在给定位置,高原的高度和上边界以及朗缪尔波的水平在小速度下都会增加。等离子体的不均匀性增加了光束的空间扩展,但其平均传播速度却降低了。最初,在给定位置处,在存在密度梯度的情况下,高原上边界处的速度小于均匀等离子体中的速度,但相反的情况是,在更长的时间处确实如此。由于温度梯度,在较大的距离和较小的距离上,高原的上边界增加到均匀等离子体中其值的上方。由于快速弛豫,密度降低的等离子体中的平台下边界值始终小于均匀等离子体中的平台下边界值。发现当存在密度梯度时,光束的局部速度降低。在均匀等离子体中光束的传播过程中,光束的局部速度散布保持不变,但在存在不均匀性时会增加。

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