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Influence of intrinsic strain on irradiation induced damage: the role of threshold displacement and surface binding energies

机译:固有应变对辐照引起的损伤的影响:阈值位移和表面结合能的作用

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摘要

Focused ion beam (FIB) machining has become a standard tool for sample preparation and in combination with digital image correlation (DIC) for the evaluation of local intrinsic stresses by measuring strain relaxation. However, FIB milling always leads to irradiation damage of the material. Current models for the formation of irradiation damage and the sputter yield are based on two key parameters, the threshold displacement energy (TDE) and surface binding energy (SBE), which are usually determined from unstrained systems with idealized surfaces. Here we use atomistic simulations to determine the TDE and SBE for strained silicon and aluminum and compare the results to full cascade simulations. A clear, material class dependent influence of the strain state on the TDE is observed, and surface amorphisation is shown to significantly increase the SBE of {001} surfaces. (C) 2016 Elsevier Ltd. All rights reserved.
机译:聚焦离子束(FIB)加工已成为用于样品制备的标准工具,并且与数字图像相关性(DIC)相结合,可通过测量应变松弛来评估局部固有应力。但是,FIB铣削始终会导致材料受到辐照损坏。当前用于形成辐照损伤和溅射成品率的模型基于两个关键参数,即阈值位移能(TDE)和表面结合能(SBE),这通常是从具有理想表面的非应变系统中确定的。在这里,我们使用原子模拟来确定应变硅和铝的TDE和SBE,并将结果与​​完整级联模拟进行比较。观察到应变状态对TDE有明显的,与材料类别有关的影响,并且表面非晶化显示出显着提高了{001}表面的SBE。 (C)2016 Elsevier Ltd.保留所有权利。

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