光致发光
密度泛函理论
材料科学
单斜晶系
格子(音乐)
凝聚态物理
激发
光致发光激发
带隙
分子物理学
计算化学
化学
物理
结晶学
晶体结构
光电子学
量子力学
声学
作者
Jack Strand,Sergey K. Chulkov,Matthew B. Watkins,Alexander L. Shluger
摘要
Using an advanced computational methodology implemented in CP2K, a non-local PBE0-TC-LRC density functional and the recently implemented linear response formulation of the Time-dependent Density Functional Theory equations, we test the interpretation of the optical absorption and photoluminescence signatures attributed by previous experimental and theoretical studies to O-vacancies in two widely used oxides-cubic MgO and monoclinic (m)-HfO2. The results obtained in large periodic cells including up to 1000 atoms emphasize the importance of accurate predictions of defect-induced lattice distortions. They confirm that optical transitions of O-vacancies in 0, +1, and +2 charge states in MgO all have energies close to 5 eV. We test the models of photoluminescence of O-vacancies proposed in the literature. The photoluminescence of VO+2 centers in m-HfO2 is predicted to peak at 3.7 eV and originate from radiative tunneling transition between a VO+1 center and a self-trapped hole created by the 5.2 eV excitation.
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