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Coulomb explosion as a probe to understand the mechanism of electron stripping from ions interacting with crystalline solids

机译:库仑爆炸作为探究离子与结晶固体相互作用的电子剥离机理的探针

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摘要

When an ion impinges on a solid, it rapidly undergoes a process in which its electrons are stripped away provided the velocity of the orbiting electrons is smaller than the projectile speed. Electron stripping determines any posterior behavior of the ions in the solid, and it is assumed that it takes place on the surface of the solid, but no information is available on the details of the process. Here we show, using the Coulomb explosion of C ions moving in Si as a tool, that electron stripping takes place in an orderly manner and that the number of electrons stripped, before charge equilibration, depends on a characteristic length. We also propose a relation capable of quantifying this dependence. We foresee these results as a starting point to a more general understanding of ion-solid interaction, with important consequences on ion beam analysis and modification techniques, and special significance in silicon technology.
机译:当离子撞击到固体上时,如果轨道电子的速度小于弹丸速度,它就会迅速经历电子被剥离的过程。电子汽提确定了固体中离子的任何后行为,并且假定它发生在固体表面上,但是没有有关工艺细节的信息。在这里,我们表明,使用在Si中移动的C离子的库仑爆炸作为工具,电子剥离以有序方式发生,并且在电荷平衡之前,剥离的电子数取决于特征长度。我们还提出了一种能够量化这种依赖性的关系。我们预见到这些结果将成为对离子-固体相互作用更全面理解的起点,这对离子束分析和修饰技术将产生重要影响,并且对硅技术具有特殊意义。

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