接口(物质)
自旋电子学
密度泛函理论
计算机科学
外延
可视化
材料科学
原子单位
比例(比率)
纳米技术
计算科学
计算化学
铁磁性
凝聚态物理
物理
化学
数据挖掘
图层(电子)
并行计算
气泡
最大气泡压力法
量子力学
作者
Derek Dardzinski,Maituo Yu,Saeed Moayedpour,Noa Marom
标识
DOI:10.1088/1361-648x/ac577b
摘要
At an interface between two materials physical properties and functionalities may be achieved, which would not exist in either material alone. Epitaxial inorganic interfaces are at the heart of semiconductor, spintronic, and quantum devices. First principles simulations based on density functional theory (DFT) can help elucidate the electronic and magnetic properties of interfaces and relate them to the structure and composition at the atomistic scale. Furthermore, DFT simulations can predict the structure and properties of candidate interfaces and guide experimental efforts in promising directions. However, DFT simulations of interfaces can be technically elaborate and computationally expensive. To help researchers embarking on such simulations, this review covers best practices for first principles simulations of epitaxial inorganic interfaces, including DFT methods, interface model construction, interface structure prediction, and analysis and visualization tools.
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