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首页> 外文期刊>Nuclear instruments and methods in physics research >Migration behaviors of helium atoms near tungsten surfaces: A molecular dynamics study
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Migration behaviors of helium atoms near tungsten surfaces: A molecular dynamics study

机译:钨表面附近氦原子的迁移行为:分子动力学研究

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Under the fusion environment, the behavior of helium atoms near tungsten (W) surfaces plays a crucial role in surface morphological evolution and near-surface structural evolution of tungsten. In this paper, the migration behaviors of single helium atoms near W (2 1 1) and W (3 1 1) surfaces were investigated using molecular dynamics simulations. The results show that these single atoms can be well-described by the theory of continuous diffusion of particles in a semi-infinite medium, and different types of trap mutations occur for both surfaces. Although the temperature has an impotent impact on the occurrence probabilities of different types of trap mutations and the probabilities of helium atoms escaping from trap sites, there is no a strict relationship between the depth and temperature for trap mutations occurring. For the W (2 1 1) surface, an approximately one-dimensional diffusion may take place along the 1 1 1 directions when the helium atoms are trapped near 2 layers below the W surface. For the W (3 1 1) surface, the behaviors of trap mutations seem more significant than (2 1 1) and (1 1 1) surfaces at T = 1000 K. To investigate the diffusion and trap mutation processes, the nudged elastic band (NEB) method was also applied. These results can be helpful for understanding of helium release, helium retention, subsurface helium clustering, as well as surface morphological evolution.
机译:在融合环境下,钨(W)表面附近的氦原子的行为在钨的表面形态演化和近表面结构演变中起着至关重要的作用。在本文中,使用分子动力学模拟研究了W(211)和W(311)表面附近的单氦原子的迁移行为。结果表明,这些单个原子可以通过在半无限培养基中连续扩散理论来批评,并且两个表面发生不同类型的捕获突变。尽管温度对不同类型捕集突变的发生概率的影响和从陷阱部位逸出的氦原子的概率影响,但是在发生的捕集突变的深度和温度之间没有严格的关系。对于W(211)表面,当氦原子被捕获在W表面下方的2层附近时,近似一维扩散可以沿<111>方向进行。对于W(311)表面,捕获突变的行为似乎在T = 1000K处的(21. 1)和(111)表面更显着,以研究扩散和捕集突变过程,亮起的弹性带(NEB)方法也应用。这些结果可以有助于了解氦释放,氦保持,地下氦聚类以及表面形态演化。

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