作者: Yue-Lin Liu , Ying Zhang , Hong-Bo Zhou , Guang-Hong Lu , Feng Liu
DOI: 10.1103/PHYSREVB.79.172103
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摘要: We reveal the microscopic vacancy trapping mechanism for H bubble formation in W based on first-principles calculations of the energetics of H-vacancy interaction and the kinetics of H segregation. Vacancy provides an isosurface of optimal charge density that induces collective H binding on its internal surface, a prerequisite for the formation of H 2 molecule and nucleation of H bubble inside the vacancy. The critical H density on the vacancy surface before the H 2 formation is found to be 10 19–10 20 H atoms per m 2. We believe that such …