We present an improved electronic linear response model to incorporate polarization and charge-transfer effects in polarizable force fields. This model is a generalization of the Atom-Condensed Kohn-Sham Density Functional Theory (DFT), approximated to second order (ACKS2): it can now be defined with any underlying variational theory (next to KS-DFT) and it can include atomic multipoles and off-center basis functions. Parameters in this model are computed efficiently as expectation values of an electronic wavefunction, obviating the need for their calibration, regularization, and manual tuning. In the limit of a complete density and potential basis set in the ACKS2 model, the linear response properties of the underlying theory for a given m...
This is a preliminary study toward implementation of analytic density functional response approach f...
Molecular-mechanical (MM) force fields are mathematical functions that map the geometry of a molecul...
Knowledge of the electrical charge distribution and polarizability of a molecule is essential for th...
We present an improved electronic linear response model to incorporate polarization and charge-trans...
The last 20 years of force field development have shown that even well parametrized classical models...
A frequency-dependent extension of the polarizable force field “Atom-Condensed Kohn–Sham density fu...
ABSTRACT: In order to carry out a detailed analysis of the molecular static polarizability, which is...
In order to carry out a detailed analysis of the molecular static polarizability, which is the respo...
Traditionally, a polarizable force field (PFF) is a classical model for the local electronic linear ...
Nonpolarizable force fields cannot guarantee the accurate calculation of optical dielectric constant...
We present an efficient polarizable electrostatic model based on direct polarization, SMIRNOFF speci...
We present an efficient polarizable electrostatic model based on direct polarization, SMIRNOFF speci...
Gas-phase electric properties of molecules can be computed routinely using wave function methods or ...
Gas-phase electric properties of molecules can be computed routinely using wave function methods or ...
We present an efficient polarizable electrostatic model based on direct polarization, SMIRNOFF speci...
This is a preliminary study toward implementation of analytic density functional response approach f...
Molecular-mechanical (MM) force fields are mathematical functions that map the geometry of a molecul...
Knowledge of the electrical charge distribution and polarizability of a molecule is essential for th...
We present an improved electronic linear response model to incorporate polarization and charge-trans...
The last 20 years of force field development have shown that even well parametrized classical models...
A frequency-dependent extension of the polarizable force field “Atom-Condensed Kohn–Sham density fu...
ABSTRACT: In order to carry out a detailed analysis of the molecular static polarizability, which is...
In order to carry out a detailed analysis of the molecular static polarizability, which is the respo...
Traditionally, a polarizable force field (PFF) is a classical model for the local electronic linear ...
Nonpolarizable force fields cannot guarantee the accurate calculation of optical dielectric constant...
We present an efficient polarizable electrostatic model based on direct polarization, SMIRNOFF speci...
We present an efficient polarizable electrostatic model based on direct polarization, SMIRNOFF speci...
Gas-phase electric properties of molecules can be computed routinely using wave function methods or ...
Gas-phase electric properties of molecules can be computed routinely using wave function methods or ...
We present an efficient polarizable electrostatic model based on direct polarization, SMIRNOFF speci...
This is a preliminary study toward implementation of analytic density functional response approach f...
Molecular-mechanical (MM) force fields are mathematical functions that map the geometry of a molecul...
Knowledge of the electrical charge distribution and polarizability of a molecule is essential for th...