• Based on the rf (radio frequency) sheath model, the equation for ion momentum when reaching the material surface was derived.

    利用射频模型,推出离子到达加工材料表面动量表达式

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  • Based on the radio frequency sheath model, the equations for ion velocity, density, and energy flux colliding on the material surface are derived.

    射频鞘层模型基础推出离子轰击材料表面速度浓度能量通量表达式

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  • Some numerical results have been obtained for the instantaneous sheath thickness, the instantaneous voltage and the ion flux density on the substrate, etc.

    采用数值方法模拟出鞘瞬时厚度及极板的瞬时电位变化、鞘层内离子密度电场强度等物理量的时空变化。

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  • On the basis of the plasma conditions in LEO. We adopt plasma thin sheath model and calculate ion collection current.

    本文根据LEO等离子体温度低、密度高、德拜长度小的特点,采用层近似,计算离子收集电流

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  • It was shown that the ion density is higher and the electron temperature is lower in the vicinity of inductively coupled plasma sheath according to the ionic line and atomic line.

    原子谱线离子谱线特性分析表明附近区域感应耦合等离子体具有较高离子密度低的电子温度

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  • It was shown that the ion density is higher and the electron temperature is lower in the vicinity of inductively coupled plasma sheath according to the ionic line and atomic line.

    原子谱线离子谱线特性分析表明附近区域感应耦合等离子体具有较高离子密度低的电子温度

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