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A kinetic trajectory simulation model for magnetized plasma sheath

机译:磁化等离子体鞘的动力学轨迹仿真模型

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The plasma-sheath region in an oblique magnetic field has been studied using a kinetic trajectory simulation model. It has been observed that the magnetized plasma-sheath region has two distinct regions: magnetic field dominant region lying close to the sheath entrance and electric field dominant region (almost no effect of magnetic field) lying close to the wall. The particle densities and potential decrease as we move towards the wall, which becomes prominent as the strength and obliqueness of the magnetic field increase. Our results agree well with previous works from other models and hence, we expect our model to provide a basis for studying all types of magnetized plasmas, using the kinetic approach.
机译:使用动力学轨迹仿真模型研究了倾斜磁场中的等离子鞘区域。已经观察到,磁化的等离子体-护套区域具有两个不同的区域:靠近鞘管入口的磁场主导区域和靠近壁的电场主导区域(几乎没有磁场的影响)。随着我们向壁移动,粒子的密度和电势会降低,随着磁场强度和倾斜度的增加,粒子密度和电势会变得更加明显。我们的结果与其他模型的先前工作非常吻合,因此,我们希望我们的模型能够为使用动力学方法研究所有类型的磁化等离子体提供基础。

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