论文标题
孤立点缺陷的振动和振动结构:钻石中的氮呈中心
Vibrational and vibronic structure of isolated point defects: the nitrogen-vacancy center in diamond
论文作者
论文摘要
我们介绍了通过第一原理密度功能理论计算稀释极限中点缺陷的振动和振动特性的理论研究。作为一个典范,我们选择了带负电荷的氮胶合中心,这是一种固态系统,已用作许多量子技术方案的测试台。我们通过构建包含数万个原子的大型超级细胞的动态矩阵来实现低有效的缺陷浓度。本文的主要目标是计算由于耦合到振动的自由度而导致的发光和吸收线路。与对称$ a_1 $模式的耦合是通过黄 - 奖理论计算的。重要的是,要包括$ e $模式的非平凡贡献,我们开发了一种有效的方法来解决多模式$ e \ otimes e $ jahn-teller问题。我们的结果表明,对于钻石中的NV中心,适当的$ E $模式对吸收特别重要。我们可以与实验良好的发光和吸收相吻合。最后,对理论方法的其余缺点进行了严格的审查。提出的理论方法将使固体中点缺陷的识别和未来研究受益。
We present a theoretical study of vibrational and vibronic properties of a point defect in the dilute limit by means of first-principles density functional theory calculations. As an exemplar we choose the negatively charged nitrogen-vacancy center, a solid-state system that has served as a testbed for many protocols of quantum technology. We achieve low effective concentrations of defects by constructing dynamical matrices of large supercells containing tens of thousands of atoms. The main goal of the paper is to calculate luminescence and absorption lineshapes due to coupling to vibrational degrees of freedom. The coupling to symmetric $a_1$ modes is computed via the Huang-Rhys theory. Importantly, to include a nontrivial contribution of $e$ modes we develop an effective methodology to solve the multi-mode $E \otimes e$ Jahn-Teller problem. Our results show that for NV centers in diamond a proper treatment of $e$ modes is particularly important for absorption. We obtain good agreement with experiment for both luminescence and absorption. Finally, the remaining shortcomings of the theoretical approach are critically reviewed. The presented theoretical approach will benefit identification and future studies of point defects in solids.