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Defect annihilation in heavy ion irradiated polycrystalline gold

机译:重离子照射多晶金的缺陷湮灭

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摘要

In this study, we explore the interaction of electron wind force (EWF) with defects originating from ion irradiation in-situ inside a transmission electron microscope. Nanocrystalline gold specimens were self-ion irradiated to a dose of 5 x 10(15) ions/cm(2) (45 displacement per atom) to generate a high density of displacement damage. We also developed a molecular dynamics simulation model to understand the associated atomic scale mechanisms. Both experiments and simulations show that the EWF can impart significant defect mobility even at low temperatures, resulting in the migration and elimination of defects in a few minutes. We propose that the EWF interacts with defects to create highly glissile Shockley partial dislocations, which makes the fast and low temperature defect annihilation possible. (C) 2020 Elsevier B.V. All rights reserved.
机译:在这项研究中,我们探讨了电子风力(EWF)与透射电子显微镜内部原位离子照射的缺陷的相互作用。纳米晶金试样被自隔离照射到5×10(15)离子/ cm(2)(每次45位)的剂量,以产生高密度的位移损伤。我们还开发了一种分子动力学仿真模型,以了解相关的原子规模机制。两种实验和模拟表明,即使在低温下,EWF也可以赋予显着的缺陷迁移率,从而在几分钟内迁移和消除缺陷。我们建议EWF与缺陷相互作用以创造高度透明的震撼部分位错,这使得快速和低温缺陷湮灭成为可能。 (c)2020 Elsevier B.v.保留所有权利。

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