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Mass-energy analysis of ions in the anode plasma created by high-current vacuum spark

机译:高电流真空火花产生的阳极等离子体中离子的质量分析

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The paper presents the results on charge and energy ion distribution of heavy species of plasma generated at the anode of vacuum discharge. Liquid metal Ga-In alloy was used both as the cathode and anode material. Using an electrical circuit with a relatively low impedance (∼6 Ohm) and short inter-electrode gap (<1 mm), relatively high current (∼1 kA) was achieved in the discharge at the initial voltage of ∼10 kV. With this, relatively high power density (>108 W/cm2) was applied to the anode during ∼50 ns time period, generating a high-density anode plasma like at the electron-beam ablation. By means of HIDEN EQP analyzer, energy spectra analysis of separate ion charge state species of such ablation plasma was performed. Data obtained show the presence of highly ionized species (up to Z = 4). Ion energy was found to be proportional to the ion charge and increasing with the applied power density.
机译:本文介绍了在真空放电阳极处产生的重质物种的电荷和能量离子分布的结果。使用液态金属Ga-In合金,既是阴极和阳极材料。使用具有相对低阻抗(〜6欧姆)和短电极间隙(<1mm)的电路,在初始电压的放电时实现了相对高的电流(~1ka)。由此,在〜50 ns时间段期间将相对高的功率密度(> 10 8 w / cm 2 )施加到阳极上,产生高密度阳极等离子体在电子束消融。通过HIDEN EQP分析仪,进行了这种烧蚀等离子体的单独离子电荷状态物种的能谱分析。获得的数据显示出高度电离物质(最多Z = 4)。发现离子能量与离子电荷成比例,并随着施加的功率密度增加。

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