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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >A model for sputtering from solid surfaces bombarded by energetic clusters
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A model for sputtering from solid surfaces bombarded by energetic clusters

机译:从高能团簇轰击的固体表面溅射的模型

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A model is developed to explain and predict the sputtering from solid surfaces bombarded by energetic clusters, on the basis of shock wave generated at the impact of cluster. Under the shock compression the temperature increases causing the vaporization of material that requires an internal energy behind the shock, at least, of about twice the cohesive energy of target. The sputtering is treated as a gas of vaporized particles from a hemispherical volume behind the shock front. The sputter yield per cluster atoms is given as a universal function depending on the ratio of target to cluster atomic density and the ratio of cluster velocity to the velocity calculated on the basis of an internal energy equals about twice cohesive energy. The predictions of the model for self sputter yield of copper, gold, tungsten and of silver bombarded byC60clusters agree well, with the corresponding data simulated by molecular dynamics.
机译:建立了一个模型,以解释和预测高能团簇轰击的固体表面的溅射,并基于在团簇撞击时产生的冲击波。在冲击压缩下,温度升高,导致材料蒸发,该材料在冲击后需要内部能量,至少约为目标内聚能的两倍。溅射被视为来自冲击前部后半球体积的汽化颗粒气体。取决于靶原子与团簇原子密度的比率以及团簇速度与基于内部能量计算的速度的比率等于约两倍的内聚能,将每个团簇原子的溅射产率作为通用函数给出。 C60团簇轰击的铜,金,钨和银的自溅射产额模型的预测与分子动力学模拟的相应数据非常吻合。

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