First-principles theory of the luminescence lineshape for the triplet transition in diamond NV centre
arXiv:1405.7313 · doi:10.1088/1367-2630/16/7/073026
Abstract
In this work we present theoretical calculations and analysis of the vibronic structure of the spin-triplet optical transition in diamond nitrogen-vacancy centres. The electronic structure of the defect is described using accurate first-principles methods based on hybrid functionals. We devise a computational methodology to determine the coupling between electrons and phonons during an optical transition in the dilute limit. As a result, our approach yields a smooth spectral function of electron-phonon coupling and includes both quasi-localized and bulk phonons on equal footings. The luminescence lineshape is determined via the generating function approach. We obtain a highly accurate description of the luminescence band, including all key parameters such as the Huang-Rhys factor, the Debye-Waller factor, and the frequency of the dominant phonon mode. More importantly, our work provides insight into the vibrational structure of nitrogen vacancy centres, in particular the role of local modes and vibrational resonances. In particular, we find that the pronounced mode at 65 meV is a vibrational resonance, and we quantify localization properties of this mode. These excellent results for the benchmark diamond nitrogen-vacancy centre provide confidence that the procedure can be applied to other defects, including alternative systems that are being considered for applications in quantum information processing.
References in corpus (3)
Cited by in corpus (12)
- \emph{Ab initio} calculation of spin-orbit coupling for NV center in diamond exhibiting dynamic Jahn-Teller effect
- Towards identification of paramagnetic substitutional carbon defects in hexagonal boron nitride acting as quantum bits
- Optical properties of an ensemble of G-centers in silicon
- Photoluminescence spectra of point defects in semiconductors: validation of first principles calculations
- First-principles Study of the Luminescence of Eu2+-doped Phosphors
- First-principles study of Ce doped lanthanum silicate nitride phosphors: Neutral excitation, Stokes shift, and luminescent center identification
- Electronic structure and magneto-optical properties of silicon-nitrogen-vacancy complexes in diamond
- Bistable carbon-vacancy defects in -BN
- Investigation of oxygen-vacancy complexes in diamond by means of \textit{ab initio} calculations
- Investigation of photon emitters in Ce-implanted hexagonal boron nitride
- Qubit guidelines for solid-state spin defects
- Magnon Condensation in a Dense Nitrogen-Vacancy Spin Ensemble