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Dynamics of large Ar cluster bombardment of organic solids (Conference Paper)

机译:大型Ar团簇轰击有机固体的动力学(会议论文)

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摘要

Molecular dynamics computer simulations are used to investigate the ejection process of molecules from a benzene crystal bombarded with keV large Ar clusters. The effect of projectile size, the kinetic energy and the impact angle on the sputtering efficiency is investigated. The results show that although the sputtering yield depends on all projectile parameters, this dependence can be greatly simplified if the sputtering yield per projectile nucleon is expressed as a function of projectile kinetic energy per nucleon. A different dependence of the total sputtering yield on the impact angle has been observed for small and large projectiles. This effect is attributed to a 'washing out' mechanism. For large projectiles most of the organic molecules are ejected by gentle collective action of argon atoms. Proper selection of the projectile parameters allows for achieving conditions where only intact molecules are emitted.
机译:分子动力学计算机模拟用于研究从被keV大Ar团簇轰击的苯晶体中分子的喷射过程。研究了弹丸尺寸,动能和冲击角对溅射效率的影响。结果表明,尽管溅射产率取决于所有射弹参数,但是如果将每个射弹核子的溅射产率表示为每个核子的射弹动能的函数,则可以大大简化这种依赖性。对于小型和大型弹丸,已经观察到总溅射产率对冲击角的不同依赖性。该效果归因于“冲洗”机制。对于大型射弹,大多数有机分子是通过氩原子的柔和集体作用而喷出的。适当选择射弹参数可以实现仅发射完整分子的条件。

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