International audienceA faster and more efficient quantum mechanical simulation method for application to complicated issues of real systems beyond model cases has long been sought after. The density-functional based tight-binding (DFTB) method has successfully explained the atomistic and electronic properties of semiconductors, surfaces, and nanostructures. In addition, the time-dependent formalism implemented in DFTB showed high efficiency in terms of computational cost. In this study, we demonstrated the structural and electronic evolution of small molecules induced by a laser pulse using the time-dependent DFTB (TD-DFTB) method. We identified the critical fluence of the input laser for structural dissociations in carbon chains and fulle...
A new formulation of time-dependent density functional tight binding (TD-DFTB) is reported in this p...
International audience¡¡¡¡¡¡¡ HEAD The scopeρ of this article is to present an overview of the Densi...
In order to properly describe the dynamics of a many-particle system in strong, timedependent fields...
We review our recent developments in the ab initio simulation of excited-state dynamics within the f...
We review our recent developments in the ab initio simulation of excited-state dynamics within the f...
We present numerical simulations of femtosecond laser induced dynamics of some selected simple molec...
The increasing need to simulate the dynamics of photoexcited molecular systems and nanosystems in th...
The atomistic resolution recently achieved by ultrafast spectroscopies demands corresponding theoret...
The combination of time-dependent density functional theory and quantum optimal control formalism is...
We propose a new method of calculating electronically excited states that combines a density functio...
Time-dependent density functional tight-binding (TD-DFTB) method is a fast electronic structure meth...
Our principal objective has centered on the development of sophisticated computational techniques to...
Time Dependent Density Functional Theory is used to probe the structure of matter. Coulomb explosio...
The real-time time-dependent density functional theory (rt-TDDFT) approach, which is complementary t...
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...
International audience¡¡¡¡¡¡¡ HEAD The scopeρ of this article is to present an overview of the Densi...
In order to properly describe the dynamics of a many-particle system in strong, timedependent fields...
We review our recent developments in the ab initio simulation of excited-state dynamics within the f...
We review our recent developments in the ab initio simulation of excited-state dynamics within the f...
We present numerical simulations of femtosecond laser induced dynamics of some selected simple molec...
The increasing need to simulate the dynamics of photoexcited molecular systems and nanosystems in th...
The atomistic resolution recently achieved by ultrafast spectroscopies demands corresponding theoret...
The combination of time-dependent density functional theory and quantum optimal control formalism is...
We propose a new method of calculating electronically excited states that combines a density functio...
Time-dependent density functional tight-binding (TD-DFTB) method is a fast electronic structure meth...
Our principal objective has centered on the development of sophisticated computational techniques to...
Time Dependent Density Functional Theory is used to probe the structure of matter. Coulomb explosio...
The real-time time-dependent density functional theory (rt-TDDFT) approach, which is complementary t...
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...
International audience¡¡¡¡¡¡¡ HEAD The scopeρ of this article is to present an overview of the Densi...
In order to properly describe the dynamics of a many-particle system in strong, timedependent fields...