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Element- and charge-state-resolved ion energies in the cathodic arc plasma from composite AlCr cathodes in argon nitrogen and oxygen atmospheres

机译:氩氮和氧气氛中来自复合AlCr阴极的阴极电弧等离子体中元素和电荷态分辨的离子能量

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摘要

The energy distribution functions of ions in the cathodic arc plasma using composite AlCr cathodes were measured as a function of the background gas pressure in the range 0.5 to 3.5 Pa for different cathode compositions and gas atmospheres. The most abundant aluminium ions were Al+ regardless of the background gas species, whereas Cr2+ ions were dominating in Ar and N2 and Cr+ in O2 atmospheres. The energy distributions of the aluminium and chromium ions typically consisted of a high-energy fraction due to acceleration in the expanding plasma plume from the cathode spot and thermalised ions that were subjected to collisions in the plasma cloud. The fraction of the latter increased with increasing background gas pressure. Atomic nitrogen and oxygen ions showed similar energy distributions as the aluminium and chromium ions, whereas the argon and molecular nitrogen and oxygen ions were formed at greater distance from the cathode spot and thus less subject to accelerating gradients. In addition to the positively charged metal and gas ions, negatively charged oxygen and oxygen-containing ions were observed in O2 atmosphere. The obtained results are intended to provide a comprehensive overview of the ion energies and charge states in the arc plasma of AlCr composite cathodes in different gas atmospheres as such plasmas are frequently used to deposit thin films and coatings.
机译:对于不同的阴极组成和气体气氛,使用复合AlCr阴极测量的阴极电弧等离子体中离子的能量分布函数是背景气压在0.5至3.5Pa之间的函数。不论背景气体种类如何,最丰富的铝离子为Al + ,而Cr 2 + 离子在Ar和N2中占主导地位,而Cr + 在O2气氛中。铝和铬离子的能量分布通常由高能量分数组成,这归因于来自阴极点的膨胀等离子体羽和在等离子体云中遭受碰撞的热化离子的加速。后者的比例随着背景气压的增加而增加。原子氮离子和氧离子显示出与铝离子和铬离子相似的能量分布,而氩离子和分子氮离子和氧离子在距阴极点更大的距离处形成,因此较少受到加速梯度的影响。除带正电的金属和气体离子外,在O2气氛中还观察到带负电的氧和含氧离子。所得结果旨在提供对AlCr复合阴极在不同气体气氛中的电弧等离子体中离子能量和电荷状态的全面概述,因为此类等离子体经常用于沉积薄膜和涂层。

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