We present a discrete solvent reaction field (DRF) model for the calculation of frequency-dependent hyperpolarizabilities of molecules in solution. In this model the solute is described using density functional theory (DFT) and the discrete solvent molecules are described with a classical polarizable model. The first hyperpolarizability is obtained in an efficient way using time-dependent DFT and the (2n+1) rule. The method was tested for liquid water using a model in which a water molecule is embedded in a cluster of 127 classical water molecules. The frequency-dependent first and second hyperpolarizabilities related to the electric field induced second harmonic generation (EFISH) experiment, were calculated both in the gas phase and in th...
In this work we present theory and implementation for a discrete reaction field model within Density...
In this work we present theory and implementation for a discrete reaction field model within Density...
In this work we present theory and implementation for a discrete reaction field model within Density...
We present a discrete solvent reaction field (DRF) model for the calculation of frequency-dependent ...
We present a discrete solvent reaction field (DRF) model for the calculation of frequency-dependent ...
We present a discrete solvent reaction field (DRF) model for the calculation of frequency-dependent ...
We present a discrete solvent reaction field (DRF) model for the calculation of frequency-dependent ...
We present a discrete solvent reaction field (DRF) model for the calculation of frequency-dependent ...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
In this work we present theory and implementation for a discrete reaction field model within Density...
In this work we present theory and implementation for a discrete reaction field model within Density...
In this work we present theory and implementation for a discrete reaction field model within Density...
In this work we present theory and implementation for a discrete reaction field model within Density...
In this work we present theory and implementation for a discrete reaction field model within Density...
We present a discrete solvent reaction field (DRF) model for the calculation of frequency-dependent ...
We present a discrete solvent reaction field (DRF) model for the calculation of frequency-dependent ...
We present a discrete solvent reaction field (DRF) model for the calculation of frequency-dependent ...
We present a discrete solvent reaction field (DRF) model for the calculation of frequency-dependent ...
We present a discrete solvent reaction field (DRF) model for the calculation of frequency-dependent ...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
A discrete solvent reaction field model for calculating frequency-dependent molecular linear respons...
In this work we present theory and implementation for a discrete reaction field model within Density...
In this work we present theory and implementation for a discrete reaction field model within Density...
In this work we present theory and implementation for a discrete reaction field model within Density...
In this work we present theory and implementation for a discrete reaction field model within Density...
In this work we present theory and implementation for a discrete reaction field model within Density...