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Trapping of helium atom by vacancy in tungsten: a density functional theory study

机译:钨空缺诱捕氦原子:密度泛函理论研究

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The interaction between helium ( He) atom and vacancy defect in tungsten (W) has been investigated by using first-principles simulations. We have obtained that the most stable site for He in tungsten is the substitutional position because He can keep its own electronic structure at this position. In the studied tungsten system, vacancy can act as a trapping center for surrounding He atom with negative trapping energy. The migration behaviors of He atom at tetrahedral interstitial site in W, which can be trapped by vacancy but the final position is almost unchanged comparing with its initial position through structural relaxation, have been predicted and discussed. It is also found that single He atom prefers to go through an octahedral site rather than through a direct path to the vacancy, and the stronger the interaction between He atom and vacancy is, the lower the migration barrier will be.
机译:利用第一性原理模拟研究了氦原子与钨中空位缺陷的相互作用。我们得到了He在钨中最稳定的位置是取代位置,因为他可以在这个位置保持自己的电子结构。在所研究的钨系统中,空位可以作为一个陷阱中心,以负的陷阱能量包围氦原子。本文预测和讨论了He原子在W中四面体填隙位的迁移行为,这种迁移行为可以被空位捕获,但通过结构弛豫,最终位置与初始位置几乎没有变化。研究还发现,单个He原子倾向于通过八面体位置而不是直接通过空位路径,He原子与空位之间的相互作用越强,迁移势垒越低。

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