학술논문

First-principles study of native defects in bulk Sm2CuO4 and its (001) surface structure.
Document Type
Article
Source
Journal of Applied Physics. 2018, Vol. 123 Issue 16, pN.PAG-N.PAG. 8p. 2 Diagrams, 1 Chart, 6 Graphs.
Subject
*SAMARIUM compounds
*SURFACE structure
*ANTIFERROMAGNETISM
*MAGNETIC properties of metals
*SUPERCONDUCTIVITY
*DENSITY functional theory
Language
ISSN
0021-8979
Abstract
Using the first-principles calculations based on the density functional theory, we have studied the bulk defect formation and surface structures of Sm2CuO4. To ensure the accuracy of calculations, the spin order of Cu atoms is rechecked and it is the well-known nearest-neighbor antiferromagnetic ground state, which can be attributed to the hole-mediated superexchange through the strong pdσ hybridization interaction between Cu dx2-y2 electron and the neighboring oxygen px (or py) electron. Under each present experimental condition, the Sm vacancy has a very high formation energy and is unlikely to be stable. The Cu vacancy is a shallow acceptor, which is preferred under O-rich conditions, whereas the O vacancy is a donor and energetically favorable under O-poor conditions. To construct its (001) surface structure, CuOO, CuO, and Cu terminated surfaces are found to be most favorable under different experimental conditions. The stable surface structures are always accompanied by significant surface atomic reconstructions and electron charge redistribution, which are intimately correlated to each other. [ABSTRACT FROM AUTHOR]