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Defects in ion-implanted hcp-titanium: A first-principles study of electronic structures

机译:离子注入HCP-钛的缺陷:电子结构的第一性原理研究

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摘要

The electronic structures of hexagonal closed-packed (h.c.p) titanium containing a vacancy and krypton impurity atoms at various insertion sites are calculated by first-principles methods in the framework of the density-functional theory (DFT). The density of states (DOS) for titanium containing a vacancy defect shows resonance-like features. Also, the bulk electron density decreases from ~0.15~3 to ~0.05~3 at the vacancy centre. Electronic structure calculations have been performed to investigate what underlies the krypton site preference in titanium. The DOS of the nearest-neighbour (NN) titanium atoms to the octahedral krypton appears to be less distorted (relative to pure titanium) when compared to the NN titanium atoms to the tetrahedral krypton. The electronic density deformation maps show that polarization of the titanium atoms is stronger when the krypton atom is located at the tetrahedral site. Since krypton is a closed-shell atom, thus precluding any bonding with the titanium atoms, we may conclude that the polarization of the electrons in the vicinity of the inserted krypton atoms and the distortion of the DOS of the NN titanium atoms to the krypton serve to indicate which defect site is preferred when a krypton atom is inserted into titanium. Based on these considerations, we conclude that the substitutional site is the most favourable one, and the octahedral is the preferred interstitial site, in agreement with recent DFT calculations of the energetics of krypton impurity sites
机译:在密度泛函理论(DFT)的框架下,采用第一性原理方法计算了含有空位和氪杂质原子的六方封闭堆积(h.c.p)钛在不同插入位点的电子结构.含有空位缺陷的钛的态密度 (DOS) 显示出类似共振的特征。此外,空位中心的体电子密度从~0.15~3降低到~0.05~3。已经进行了电子结构计算,以研究钛中氪位点偏好的基础。与四面体氪的 NN 钛原子相比,最近邻 (NN) 钛原子与八面体氪的 DOS 似乎不那么失真(相对于纯钛)。电子密度形变图表明,当氪原子位于四面体位点时,钛原子的极化更强。由于氪是一个封闭壳层原子,因此排除了与钛原子的任何键合,我们可以得出结论,插入的氪原子附近的电子极化以及 NN 钛原子的 DOS 扭曲到氪原子中,用于指示当氪原子插入钛时哪个缺陷位点是首选。基于这些考虑,我们得出结论,取代位点是最有利的位点,而八面体是首选的间质位点,这与最近DFT对氪杂质位点能量学的计算一致

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