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首页> 外文期刊>Physical review, B >Time-dependent broken-symmetry density functional theory simulation of the optical response of entangled paramagnetic defects: Color centers in lithium fluoride
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Time-dependent broken-symmetry density functional theory simulation of the optical response of entangled paramagnetic defects: Color centers in lithium fluoride

机译:时间依赖性破碎对称密度函数理论模拟缠结顺磁缺陷的光学响应:氟化锂中的颜色中心

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摘要

Parameter-free atomistic simulations of entangled solid-state paramagnetic defects may aid in the rational design of devices for quantum information science. This work applies time-dependent density functional theory (TDDFT) embedded-cluster simulations to a prototype entangled-defect system, namely two adjacent singlet-coupled F color centers in lithium fluoride. TDDFT calculations accurately reproduce the experimental visible absorption of both isolated and coupled F centers. The most accurate results are obtained by combining spin symmetry breaking to simulate strong correlation, a large fraction of exact (Hartree-Fock-like) exchange to minimize the defect electrons' self-interaction error, and a standard semilocal approximation for dynamical correlations between the defect electrons and the surrounding ionic lattice. These results motivate application of two-reference correlated ab initio approximations to the M-center, and application of TDDFT in parameter-free simulations of more complex entangled paramagnetic defect architectures.
机译:无缠结的固态顺磁缺陷的无参数原子模拟可能有助于量子信息科学设备的合理设计。这项工作将时间依赖的密度泛函理论(TDDFT)嵌入式集群模拟应用于原型缠结缺陷系统,即氟化锂中的两个相邻的单线耦合F色中心。 TDDFT计算精确地再现隔离和耦合F中心的实验性可见吸收。通过组合旋转对称性破碎来模拟强相关性的最精确的相关性,精确(Hartree-Fock样)交换的大部分最大限度地获得最准确的结果,以最小化缺陷电子的自交换误差,以及用于动态相关性的标准半透明近似缺陷电子和周围的离子晶格。这些结果激发了两个参考相关的AB Initio近似值到M-Center的应用,以及在无参数模拟中的更复杂缠结的顺磁缺陷架构中的TDDFT应用。

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