Lany Stephan, Zunger Alex
National Renewable Energy Laboratory, Golden, Colorado 80401, USA.
Phys Rev Lett. 2004 Oct 8;93(15):156404. doi: 10.1103/PhysRevLett.93.156404. Epub 2004 Oct 5.
First-principles total-energy calculations reveal a novel local atomic reconstruction mode around anion vacancies in II-VI and chalcopyrite compounds resulting from the formation of metal dimers. As a consequence, the neutral Se vacancy has an unexpected low symmetry in ZnSe and becomes a deep donor in both ZnSe and CuGaSe2, contrary to the common belief regarding chalcopyrites. The calculated optical transition energies explain the hitherto puzzling absorption bands observed in the classic experiments of the color center in ZnS.
第一性原理总能计算揭示了II-VI族化合物和黄铜矿化合物中围绕阴离子空位的一种新型局部原子重构模式,这种模式是由金属二聚体的形成导致的。因此,中性硒空位在ZnSe中具有意想不到的低对称性,并且在ZnSe和CuGaSe2中都成为深施主,这与关于黄铜矿的普遍看法相反。计算得到的光学跃迁能量解释了在ZnS色心的经典实验中迄今令人困惑的吸收带。