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Radiation damage from single heavy ion impacts on metal surfaces

机译:单个重离子撞击金属表面造成的辐射损伤

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Abstract: The effects of single ion impacts on the surfaces of films of Au, Ag, In and Pb have been studied using in-situ transmission electron microscopy. On all these materials, individual ion impacts produce surface craters, in some cases, with associated expelled material. The cratering efficiency scales with the density of the irradiated metal. For very thin Au foils, in some cases individual ions are seen to punch small holes completely through the foil. Continued irradiation result in a thickening of the foil. The process giving rise to crater and hole formation and other changes observed in the thin foils has been found to be due to pulsed localized flow - i.e. melting and flow due to the thermal spikes arising form individual ion impacts. Experiments carried out on thin films of sliver sandwiched between SiO$-2$/ layers have indicated that pulsed localized flow also occurs in this system and contributes to the formation of Ag nanoclusters in SiO$-2$/ - a system of interest for its non-linear optical properties. Calculation indicates that, when ion-induced, collision cascades occur near surfaces with energy densities sufficient to cause melting, craters are formed. Crater formation occurs as a result of the explosive outflow of material from the hot molten core of the cascade. Processes occurring in the sandwiched layer are less well understood. !14
机译:摘要:利用原位透射电子显微镜研究了单离子撞击对金,银,铟和铅薄膜表面的影响。在所有这些材料上,单独的离子撞击会在某些情况下产生表面凹坑,并伴有相关的排出物质。缩孔效率与被照射金属的密度成比例。对于非常薄的Au箔,在某些情况下,可以看到单个离子完全在箔上打出小孔。持续的照射导致箔变厚。已经发现导致在薄箔中观察到的缩孔和孔形成以及其他变化的过程是由于脉冲的局部流动(即,由于单独的离子冲击引起的热尖峰引起的熔化和流动)。在夹在SiO $ -2 $ /层之间的银条薄膜上进行的实验表明,该系统中还会发生脉冲局部流动,并有助于在SiO $ -2 $ /中形成银纳米团簇。非线性光学特性。计算表明,当离子诱导的碰撞级联发生在能量密度足以引起熔化的表面附近时,形成了缩孔。由于材料从叶栅的热熔芯爆炸性流出,形成了火山口。在夹层中发生的过程还不太清楚。 !14

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