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On the mechanism of the shape elongation of embedded nanoparticles

机译:嵌入式纳米粒子形状伸长的机理

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摘要

The mechanism of the shape elongation of metal nanoparticles (NPs) in silica, which is induced under swift heavy ion irradiation, is discussed with comparing the two candidates: (ⅰ) the synergy between the ion hammering and the transient melting of NPs by the inelastic thermal spike and (ⅱ) the thermal pressure and flow model. We show that three experimental results are inconsistent with (ⅰ). The latter is supported by two-temperature molecular dynamics simulations, which simulate not only the atomic motions but also the local electron temperatures. A remarkable correlation was observed between the temporal evolution of the silica density around the ion trajectory and that of the aspect ratio of the NP later than ~1 ps after the ion impact, while no correlation was observed earlier than ~ 1 ps, even under the assumption of the instantaneous energy deposition.
机译:用比较两种候选者在Swift重离子照射下诱导的二氧化硅中金属纳米颗粒(NPS)的机理介绍:(Ⅰ)离子锤击与非弹性的NPS瞬态熔化之间的协同作用热穗和(Ⅱ)热压和流量模型。我们表明三种实验结果与(Ⅰ)不一致。后者由两个温度分子动力学模拟支持,不仅模拟原子运动,还可以模拟本地电子温度。在离子轨迹周围的二氧化硅密度的时间演变之间观察到显着的相关性,并且在离子撞击之后的NP之后的纵横比的纵横比,而在离子撞击之后的〜1ps的纵横比在〜1 ps之前没有观察到相关性,即使在其中假设瞬时能量沉积。

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