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The influence of superimposed DC current on electrical and spectroscopic characteristics of HiPIMS discharge

机译:叠加直流电流对HiPIMS放电的电学和光谱特性的影响

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The electrical characteristics and spectroscopic properties have been comprehensively investigated in a DC superimposed high power impulse magnetron sputtering (DC-HiPIMS) deposition system in this paper. The influence of superimposed DC current on the variation of target and substrate current waveforms, active species and electron temperatures with pulse voltages are focused. The peak target currents in DC-HiPIMS are lower than in HiPIMS. The time scales of the two main discharge processes like ionization and gas rarefaction in DC-HiPIMS are analyzed. When the pulse voltage is higher than 600 V, the gas rarefaction effect becomes apparent. Overall, the ionization process is found to be dominant in the initial ~100 μs during each pulse. The active species of Ar and Cr in DC-HiPIMS are higher than in HiPIMS unless that the pulse voltage reaches 900 V. However, the ionization degree in HiPIMS exceeds that in DC-HiPIMS at around 600 V. The electron temperature calculated by modified Boltzmann plot method based on corona model has a precipitous increase from 0.87 to 25.0 eV in HiPIMS, but varies mildly after the introduction of the superimposed DC current. Additionally, the current from plasma flowing to the substrate is improved when a DC current is superimposed with HiPIMS.
机译:本文在直流叠加大功率脉冲磁控溅射(DC-HiPIMS)沉积系统中对电学特性和光谱特性进行了全面研究。重点讨论了叠加的直流电流对靶和衬底电流波形,活性物质和电子温度随脉冲电压变化的影响。 DC-HiPIMS中的峰值目标电流低于HiPIMS中的目标电流。分析了DC-HiPIMS中两个主要放电过程(如电离和气体稀化)的时间尺度。当脉冲电压高于600V时,气体稀疏效应变得明显。总的来说,在每个脉冲的最初〜100μs内,电离过程占主导地位。除非脉冲电压达到900 V,否则DC-HiPIMS中Ar和Cr的活性物种高于HiPIMS。但是,在约600 V时,HiPIMS中的电离度超过DC-HiPIMS中的电离度。修正的Boltzmann计算的电子温度基于电晕模型的绘图方法在HiPIMS中从0.87 eV急剧增加到25.0 eV,但是在引入叠加的直流电流之后变化不大。另外,当DC电流与HiPIMS叠加时,从等离子体流到基板的电流得到改善。

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