Materials Department, University of California, Santa Barbara, California 93106, USA.
Phys Rev Lett. 2012 Mar 23;108(12):126404. doi: 10.1103/PhysRevLett.108.126404. Epub 2012 Mar 20.
The study of the oxygen vacancy (F center) in MgO has been aggravated by the fact that the positively charged and the neutral vacancy (F+ and F0, respectively) absorb at practically identical energies. Here we apply many-body perturbation theory in the G0W0 approximation and the Bethe-Salpeter approach to calculate the optical absorption and emission spectrum of the oxygen vacancy in all three charge states. We observe unprecedented agreement between the calculated and the experimental optical absorption spectra for the F0 and F+ center. Our calculations reveal that not only the absorption but also the emission spectra of different charge states peak at nearly the same energy, which leads to a reinterpretation of the F center's optical properties.
对 MgO 中氧空位(F 中心)的研究受到以下事实的困扰:带正电荷的和中性的空位(分别为 F+ 和 F0)在几乎相同的能量下吸收。在这里,我们应用了 G0W0 近似和 Bethe-Salpeter 方法的多体微扰理论来计算所有三种电荷状态下氧空位的光吸收和发射光谱。我们观察到 F0 和 F+中心的计算和实验光吸收光谱之间前所未有的一致性。我们的计算表明,不仅吸收光谱,而且不同电荷状态的发射光谱都在几乎相同的能量处达到峰值,这导致了对 F 中心光学性质的重新解释。