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Analytical model and measurements of the target erosion depth profile of balanced and unbalanced planar magnetron cathodes

机译:平衡和不平衡平面磁控管阴极目标腐蚀深度分布的解析模型和测量

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The erosion depth profile of planar targets in balanced and unbalanced magnetron cathodes with cylindrical symmetry is measured along the target radius. The magnetic fields have rotational symmetry. The horizontal and vertical components of the magnetic field B are measured at points above the cathode target with z = 2 x 10(-3) m. The experimental data reveal that the target erosion depth profile is a function of the angle. made by B with a horizontal line defined by z = 2 x 10(-3) m. To explain this dependence a simplified model of the discharge is developed. In the scope of the model, the pathway lengths of the secondary electrons in the pre-sheath region are calculated by analytical integration of the Lorentz differential equations. Weighting these lengths by using the distribution law of the mean free path of the secondary electrons, we estimate the densities of the ionizing events over the cathode and the relative flux of the sputtered atoms. The expression so deduced correlates for the first time the erosion depth profile of the target with the angle theta. The model shows reasonably good fittings to the experimental target erosion depth profiles confirming that ionization occurs mainly in the pre-sheath zone.
机译:沿靶标半径测量圆柱对称的平衡磁极阴极和非平衡磁控阴极中平面靶的腐蚀深度分布。磁场具有旋转对称性。在z = 2 x 10(-3)m的阴极靶上方的点处测量磁场B的水平和垂直分量。实验数据表明目标侵蚀深度分布是角度的函数。由B制作的水平线由z = 2 x 10(-3)m定义。为了解释这种依赖性,建立了放电的简化模型。在该模型的范围内,通过洛伦兹微分方程的分析积分计算出前皮区中二次电子的路径长度。通过使用二次电子的平均自由程的分布定律对这些长度进行加权,我们估算了阴极上电离事件的密度和溅射原子的相对通量。如此推导的表达式首次使靶材的腐蚀深度分布与角度θ相关。该模型显示出对实验目标侵蚀深度剖面的合理良好拟合,证实了电离作用主要发生在皮前区。

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