Research paperComputational DFTComputational AimdComputed PhononComputed RamanWorkflowSignatures of Non-Markovianity in Cavity-QED with Color Centers in 2D MaterialsMark Kamper Svendsen, Sajid Ali, Nicolas Stenger, Kristian Sommer Thygesen et al.arXiv preprint·2022·10.1103/PhysRevResearch.5.L032037·arXiv:2207.10630AbstractWe combine ab initio calculations of defects in hBN with a fully quantum mechanical and numerically exact description of a cavity-defect system to study non-Markovian phonon effects and hybridised light-matter-phonon states.Read more
Periodically repeated CBVN defect complex in an hBN monolayer studied with DFT in a 9x9x1 supercell; in-plane constrained C2v configuration.1 characterization2 properties1 figureSimulated Supercell DfthBNStudied MaterialCBVN defect complex in hBNStudied MaterialExpand
C₂CN defect complex in an hBN monolayer considered in the supplementary information.1 characterization1 figureSimulated Supercell DfthBNStudied MaterialC₂CN defect complex in hBNStudied MaterialExpand
Research paperComputational DFTComputational AimdComputed PhononComputed RamanWorkflowSignatures of Non-Markovianity in Cavity-QED with Color Centers in 2D MaterialsMark Kamper Svendsen, Sajid Ali, Nicolas Stenger, Kristian Sommer Thygesen et al.arXiv preprint·2022·10.1103/PhysRevResearch.5.L032037·arXiv:2207.10630AbstractWe combine ab initio calculations of defects in hBN with a fully quantum mechanical and numerically exact description of a cavity-defect system to study non-Markovian phonon effects and hybridised light-matter-phonon states.Read more
Periodically repeated CBVN defect complex in an hBN monolayer studied with DFT in a 9x9x1 supercell; in-plane constrained C2v configuration.1 characterization2 properties1 figureSimulated Supercell DfthBNStudied MaterialCBVN defect complex in hBNStudied MaterialExpand
C₂CN defect complex in an hBN monolayer considered in the supplementary information.1 characterization1 figureSimulated Supercell DfthBNStudied MaterialC₂CN defect complex in hBNStudied MaterialExpand
Research paperComputational DFTComputational AimdComputed PhononComputed RamanWorkflowSignatures of Non-Markovianity in Cavity-QED with Color Centers in 2D MaterialsMark Kamper Svendsen, Sajid Ali, Nicolas Stenger, Kristian Sommer Thygesen et al.arXiv preprint·2022·10.1103/PhysRevResearch.5.L032037·arXiv:2207.10630AbstractWe combine ab initio calculations of defects in hBN with a fully quantum mechanical and numerically exact description of a cavity-defect system to study non-Markovian phonon effects and hybridised light-matter-phonon states.Read more
Periodically repeated CBVN defect complex in an hBN monolayer studied with DFT in a 9x9x1 supercell; in-plane constrained C2v configuration.1 characterization2 properties1 figureSimulated Supercell DfthBNStudied MaterialCBVN defect complex in hBNStudied MaterialExpand
C₂CN defect complex in an hBN monolayer considered in the supplementary information.1 characterization1 figureSimulated Supercell DfthBNStudied MaterialC₂CN defect complex in hBNStudied MaterialExpand
Research paperComputational DFTComputational AimdComputed PhononComputed RamanWorkflowSignatures of Non-Markovianity in Cavity-QED with Color Centers in 2D MaterialsMark Kamper Svendsen, Sajid Ali, Nicolas Stenger, Kristian Sommer Thygesen et al.arXiv preprint·2022·10.1103/PhysRevResearch.5.L032037·arXiv:2207.10630AbstractWe combine ab initio calculations of defects in hBN with a fully quantum mechanical and numerically exact description of a cavity-defect system to study non-Markovian phonon effects and hybridised light-matter-phonon states.Read more
Periodically repeated CBVN defect complex in an hBN monolayer studied with DFT in a 9x9x1 supercell; in-plane constrained C2v configuration.1 characterization2 properties1 figureSimulated Supercell DfthBNStudied MaterialCBVN defect complex in hBNStudied MaterialExpand
C₂CN defect complex in an hBN monolayer considered in the supplementary information.1 characterization1 figureSimulated Supercell DfthBNStudied MaterialC₂CN defect complex in hBNStudied MaterialExpand