钨
级联
位错
碰撞级联
空位缺陷
分子动力学
辐射损伤
离子
缩放比例
分子物理学
辐照
碰撞
材料科学
幂律
化学物理
原子物理学
物理
核物理学
凝聚态物理
化学
纳米技术
溅射
冶金
统计
几何学
量子力学
色谱法
计算机科学
计算机安全
数学
薄膜
作者
Andrea E. Sand,S. L. Dudarev,K. Nordlund
出处
期刊:EPL
[Institute of Physics]
日期:2013-08-01
卷期号:103 (4): 46003-46003
被引量:234
标识
DOI:10.1209/0295-5075/103/46003
摘要
Recent experiments on in-situ high-energy self-ion irradiation of tungsten (W) show the occurrence of unusual cascade damage effects resulting from single ion impacts, shedding light on the nature of radiation damage expected in the tungsten components of a fusion reactor. In this paper, we investigate the dynamics of defect production in 150 keV collision cascades in W at atomic resolution, using molecular dynamics simulations and comparing predictions with experimental observations. We show that cascades in W exhibit no subcascade break-up even at high energies, producing a massive, unbroken molten area, which facilitates the formation of large defect clusters. Simulations show evidence of the formation of both 1/2<111> and <100> interstitial-type dislocation loops, as well as the occurrence of cascade collapse resulting in <100> vacancy-type dislocation loops, in excellent agreement with experimental observations. The fractal nature of the cascades gives rise to a scale-less power law type size distribution of defect clusters.
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