In this paper a novel approach to study the formation and relaxation of excited states in solution is presented within the integral equation formalism version of the polarizable continuum model. Such an approach uses the excited state relaxed density matrix to correct the time dependent density functional theory excitation energies and it introduces a state-specific solvent response, which can be further generalized within a time dependent formalism. This generalization is based on the use of a complex dielectric permittivity as a function of the frequency, epsilon(omega). The approach is here presented in its theoretical formulation and applied to the various steps involved in the formation and relaxation of electronic excited state...
The computational study of excited states of molecular systems in a condensed phase introduces pr...
The theoretical determination of excited-state structures remains an active field of research, as th...
We present here a study of the time dependent Stokes shift, performing quantum-mechanical calculatio...
In this paper a novel approach to study the formation and relaxation of excited states in solution i...
In this paper a novel approach to study the formation and relaxation of excited states in solution i...
In this paper a novel approach to study the formation and relaxation of excited states in solution i...
The dynamics of the electrons for a molecule in solution is coupled to the dynamics of its polarizab...
In this paper we present the theory and implementation of analytic derivatives of time-dependent de...
Author Institution: Gaussian, Inc., 340 Quinnipiac St., Bldg 40, Wallingford, CT 06492Electronic exc...
This paper provides an overview of recent research activities concerning the quantum-mechanical desc...
This paper provides an overview of recent research activities concerning the quantum-mechanical desc...
This paper provides an overview of recent research activities concerning the quantum-mechanical desc...
This paper provides an overview of recent research activities concerning the quantum-mechanical desc...
The computational study of excited states of molecular systems in a condensed phase introduces pr...
The computational study of excited states of molecular systems in a condensed phase introduces prob...
The computational study of excited states of molecular systems in a condensed phase introduces pr...
The theoretical determination of excited-state structures remains an active field of research, as th...
We present here a study of the time dependent Stokes shift, performing quantum-mechanical calculatio...
In this paper a novel approach to study the formation and relaxation of excited states in solution i...
In this paper a novel approach to study the formation and relaxation of excited states in solution i...
In this paper a novel approach to study the formation and relaxation of excited states in solution i...
The dynamics of the electrons for a molecule in solution is coupled to the dynamics of its polarizab...
In this paper we present the theory and implementation of analytic derivatives of time-dependent de...
Author Institution: Gaussian, Inc., 340 Quinnipiac St., Bldg 40, Wallingford, CT 06492Electronic exc...
This paper provides an overview of recent research activities concerning the quantum-mechanical desc...
This paper provides an overview of recent research activities concerning the quantum-mechanical desc...
This paper provides an overview of recent research activities concerning the quantum-mechanical desc...
This paper provides an overview of recent research activities concerning the quantum-mechanical desc...
The computational study of excited states of molecular systems in a condensed phase introduces pr...
The computational study of excited states of molecular systems in a condensed phase introduces prob...
The computational study of excited states of molecular systems in a condensed phase introduces pr...
The theoretical determination of excited-state structures remains an active field of research, as th...
We present here a study of the time dependent Stokes shift, performing quantum-mechanical calculatio...