We present a consistent linear response formulation of the density functional based tight-binding method for long-range corrected exchange-correlation functionals (LC-DFTB). Besides a detailed account of derivation and implementation of the method, we also test the new scheme on a variety of systems considered to be problematic for conventional local/semilocal time-dependent density functional theory (TD-DFT). To this class belong the optical properties of polyacenes and nucleobases, as well as charge transfer excited states in molecular dimers. We find that the approximate LC-DFTB method.exhibits the same general trends and similar accuracy as range separated DFT methods at significantly reduced computational cost. The scheme should be esp...
We describe a unified formulation of time-dependent Hartree-Fock (TD-HF) and time-dependent density-...
WOS:000304203500015International audienceThe classic density-functional theory (DFT) formalism intro...
WOS:000304203500015International audienceThe classic density-functional theory (DFT) formalism intro...
We present a consistent linear response formulation of the density functional based tight-binding me...
We present a consistent linear response formulation of the density functional based tight-binding me...
A new formulation of time-dependent density functional tight binding (TD-DFTB) is reported in this p...
We propose a new method of calculating electronically excited states that combines a density functio...
We propose a new method of calculating electronically excited states that combines a density functio...
The time-dependent density functional based tight-binding (TD-DFTB) approach is generalized to accou...
In this study, excited-state free energies and geometries were efficiently evaluated using a linear-...
We propose a new method of calculating electronically excited states that combines a density functio...
International audience¡¡¡¡¡¡¡ HEAD The scopeρ of this article is to present an overview of the Densi...
International audience¡¡¡¡¡¡¡ HEAD The scopeρ of this article is to present an overview of the Densi...
WOS:000304203500015International audienceThe classic density-functional theory (DFT) formalism intro...
WOS:000304203500015International audienceThe classic density-functional theory (DFT) formalism intro...
We describe a unified formulation of time-dependent Hartree-Fock (TD-HF) and time-dependent density-...
WOS:000304203500015International audienceThe classic density-functional theory (DFT) formalism intro...
WOS:000304203500015International audienceThe classic density-functional theory (DFT) formalism intro...
We present a consistent linear response formulation of the density functional based tight-binding me...
We present a consistent linear response formulation of the density functional based tight-binding me...
A new formulation of time-dependent density functional tight binding (TD-DFTB) is reported in this p...
We propose a new method of calculating electronically excited states that combines a density functio...
We propose a new method of calculating electronically excited states that combines a density functio...
The time-dependent density functional based tight-binding (TD-DFTB) approach is generalized to accou...
In this study, excited-state free energies and geometries were efficiently evaluated using a linear-...
We propose a new method of calculating electronically excited states that combines a density functio...
International audience¡¡¡¡¡¡¡ HEAD The scopeρ of this article is to present an overview of the Densi...
International audience¡¡¡¡¡¡¡ HEAD The scopeρ of this article is to present an overview of the Densi...
WOS:000304203500015International audienceThe classic density-functional theory (DFT) formalism intro...
WOS:000304203500015International audienceThe classic density-functional theory (DFT) formalism intro...
We describe a unified formulation of time-dependent Hartree-Fock (TD-HF) and time-dependent density-...
WOS:000304203500015International audienceThe classic density-functional theory (DFT) formalism intro...
WOS:000304203500015International audienceThe classic density-functional theory (DFT) formalism intro...