The computation of nuclear second derivatives of energy, or the nuclear Hessian, is an essential routine in quantum chemical investigations of ground and transition states, thermodynamic calculations, and molecular vibrations. Analytic nuclear Hessian computations require the resolution of costly coupled-perturbed self-consistent field (CP-SCF) equations, while numerical differentiation of analytic first derivatives has an unfavorable 6<i>N</i> (<i>N</i> = number of atoms) prefactor. Herein, we present a new method in which grid computing is used to accelerate and/or enable the evaluation of the nuclear Hessian via numerical differentiation: NUMFREQ@Grid. Nuclear Hessians were successfully evaluated by NUMFREQ@Grid at the DFT level as well ...
Despite steady advances in the power of computer hardware, many computations on molecular systems re...
In this work, we present a one-step second-order converger for state-specific (SS) and state-average...
Theoretical modeling of chemical and biological processes is a key to understand nature and to predi...
A linear scaling method, termed as cardinality guided molecular tailoring approach, is applied for t...
The development and computational implementation of analytical expres sions for the low-order deriv...
We have implemented the full Hessian evaluation in QM/MM simulations, as well as the approximate Mob...
An implementation of analytic second derivatives for the approximate coupled cluster singles and dou...
The calculation of the analytical second derivative matrix (Hessian) is the bottleneck for vibration...
In this work, we present a one-step second-order converger for state-specific (SS) and state-average...
The calculation of the analytical second derivative matrix (Hessian) is the bottleneck for vibration...
The cost of calculating nuclear hessians, either analytically or by finite difference methods, durin...
Second derivatives of the molecular energy with respect to the nuclear coordinates (the nuclear Hess...
This work involves studying and developing new algorithms for molecular numerical integration used f...
In the early days of numerical simulations, advances were based on the ingenuity of pioneer scientis...
We report the development of a new standard quadrature grid for DFT calculations. Standard Grid 0 (S...
Despite steady advances in the power of computer hardware, many computations on molecular systems re...
In this work, we present a one-step second-order converger for state-specific (SS) and state-average...
Theoretical modeling of chemical and biological processes is a key to understand nature and to predi...
A linear scaling method, termed as cardinality guided molecular tailoring approach, is applied for t...
The development and computational implementation of analytical expres sions for the low-order deriv...
We have implemented the full Hessian evaluation in QM/MM simulations, as well as the approximate Mob...
An implementation of analytic second derivatives for the approximate coupled cluster singles and dou...
The calculation of the analytical second derivative matrix (Hessian) is the bottleneck for vibration...
In this work, we present a one-step second-order converger for state-specific (SS) and state-average...
The calculation of the analytical second derivative matrix (Hessian) is the bottleneck for vibration...
The cost of calculating nuclear hessians, either analytically or by finite difference methods, durin...
Second derivatives of the molecular energy with respect to the nuclear coordinates (the nuclear Hess...
This work involves studying and developing new algorithms for molecular numerical integration used f...
In the early days of numerical simulations, advances were based on the ingenuity of pioneer scientis...
We report the development of a new standard quadrature grid for DFT calculations. Standard Grid 0 (S...
Despite steady advances in the power of computer hardware, many computations on molecular systems re...
In this work, we present a one-step second-order converger for state-specific (SS) and state-average...
Theoretical modeling of chemical and biological processes is a key to understand nature and to predi...