Spatially resolved optical emission analysis of spokes in HiPIMS utilising Al, Cr, Cu, Ti, and W targets

J. Hnilica, M. Šlapanská, M. Kroker, P. Klein, Petr Vasina
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Abstract

Investigating spokes in high-power impulse magnetron sputtering discharge requires non-invasive diagnostic methods to characterise accurately spoke properties. A fast photodiode and a cylindrical Langmuir probe were employed to synchronise the moment of acquisition of the optical emission spectrum with the position of a passing spoke. This study provides statistical data analysis to bring insights into spoke characteristics in a non-reactive argon atmosphere, employing aluminium, chromium, copper, titanium, and tungsten targets. Utilising different target materials, the objective is to describe basic parameters such as shape, length, and propagation velocity of spokes and also analyse spoke inner parameters such as floating potential and spectral emission, under nearly identical experimental conditions. From the optical emission, the most prominent species within the spoke were determined. Additionally, the mechanism governing spoke movement was described using a phenomenological model.
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利用 Al、Cr、Cu、Ti 和 W 靶件对 HiPIMS 中的辐条进行空间分辨光学发射分析
调查大功率脉冲磁控溅射放电中的辐条需要非侵入式诊断方法,以准确描述辐条的特性。我们采用了快速光电二极管和圆柱形朗缪尔探头,使光学发射光谱的采集时刻与通过的辐条位置同步。这项研究提供了统计数据分析,以便深入了解铝、铬、铜、钛和钨靶在非反应性氩气环境中的辐条特性。在几乎相同的实验条件下,利用不同的靶材料,目的是描述辐条的形状、长度和传播速度等基本参数,并分析辐条的内部参数,如浮动电势和光谱发射。通过光学发射,确定了辐条内部最突出的物种。此外,还利用现象学模型描述了辐条运动的机理。
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