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Three-dimensional structure of electron density fluctuations in the Hall thruster plasma: ē × B? mode

机译:霍尔推进器等离子体中电子密度波动的三维结构:模式

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Collective scattering measurements have been conducted on the plasma of a Hall thruster, in which the electron density fluctuations are fully characterized by the dynamic form factor. The dynamic form factor amplitude distribution has been measured depending on the k -vector spatial and frequency components at different locations. Fluctuations are seen as propagating waves. The largest amplitude mode propagates nearly along the cross-field direction but at a phase velocity that is much smaller than the ē × B? drift velocity. Refined directional analysis of this largest amplitude mode shows a thin angular emission diagram with a mean direction that is not strictly along the ē- × B?- direction but at small angles near it. The deviation is oriented toward the anode in the (ē, ē × B?) plane and toward the exterior of the thruster channel in the (B?, ē- × B?) plane. The density fluctuation rate is on the order of 1%. These experimentally determined directional fluctuation characteristics are discussed with regard to the linear kinetic theory model and particle-in-cell simulation results.
机译:在霍尔推力器的等离子体上进行了集体散射测量,其中电子密度的波动完全由动态形状因数表征。已经根据在不同位置的k矢量空间和频率分量测量了动态形状因数幅度分布。波动被视为传播波。最大振幅模式几乎沿交叉场方向传播,但其相速度远小于?漂移速度。对这种最大振幅模式的精细方向分析显示了一个薄的角度发射图,其平均方向并非严格沿ē-×B?-方向,而是在靠近其的小角度处。偏差在(ē,ē×B?)平面中朝向阳极,在(B ?,ē-×B?)平面中朝向推进器通道的外部。密度波动率约为1%。这些实验确定的方向波动特性将针对线性动力学理论模型和单元格内粒子模拟结果进行讨论。

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