The calculation of thermochemical data requires accurate molecular energies and heat capacities. Traditional methods rely upon the standard harmonic normal mode analysis to calculate the vibrational and rotational contributions. We utilize path integral Monte Carlo (PIMC) for going beyond the harmonic analysis, to calculate the vibrational and rotational contributions to ab initio energies. This is an application and extension of a method previously developed in our group
Knowledge of the thermochemistry of molecules is of major importance in the chemical sciences and is...
Path-integral Monte Carlo calculations in quantum statistical mechanics have been performed using ei...
Thermodynamic integration, perturbation theory, and λ-dynamics methods were applied to path integral...
The calculation of thermochemical data requires accurate molecular energies. When such high accuracy...
The accurate calculation of quantum thermochemical properties is a challenge for contemporary comput...
A molecular application is introduced for calculating quantum statistical mechanical expectation val...
A molecular application for calculating quantum statistical mechanical expectation values of large m...
The calculation of thermochemical properties is an important goal of quantum chemistry. Calculation ...
The torsional PIMC technique for the calculation of the absolute free energy is introduced and appli...
An algorithm for calculating the partition function of a molecule with the path integral Monte Carlo...
Path integral Monte Carlo with Green's function analysis allows the sampling of quantum mechanical p...
The work presented in this thesis is based on the Feynman path integral formalism for quantum statis...
Heats of reaction are among the fundamental quantities of thermo-chemistry. Since, to a first approx...
Recent engineering advances have opened up avenues to novel technologies that bridge the gap between...
A novel method for simulating the statistical mechanics of molecular systems in which both nuclear a...
Knowledge of the thermochemistry of molecules is of major importance in the chemical sciences and is...
Path-integral Monte Carlo calculations in quantum statistical mechanics have been performed using ei...
Thermodynamic integration, perturbation theory, and λ-dynamics methods were applied to path integral...
The calculation of thermochemical data requires accurate molecular energies. When such high accuracy...
The accurate calculation of quantum thermochemical properties is a challenge for contemporary comput...
A molecular application is introduced for calculating quantum statistical mechanical expectation val...
A molecular application for calculating quantum statistical mechanical expectation values of large m...
The calculation of thermochemical properties is an important goal of quantum chemistry. Calculation ...
The torsional PIMC technique for the calculation of the absolute free energy is introduced and appli...
An algorithm for calculating the partition function of a molecule with the path integral Monte Carlo...
Path integral Monte Carlo with Green's function analysis allows the sampling of quantum mechanical p...
The work presented in this thesis is based on the Feynman path integral formalism for quantum statis...
Heats of reaction are among the fundamental quantities of thermo-chemistry. Since, to a first approx...
Recent engineering advances have opened up avenues to novel technologies that bridge the gap between...
A novel method for simulating the statistical mechanics of molecular systems in which both nuclear a...
Knowledge of the thermochemistry of molecules is of major importance in the chemical sciences and is...
Path-integral Monte Carlo calculations in quantum statistical mechanics have been performed using ei...
Thermodynamic integration, perturbation theory, and λ-dynamics methods were applied to path integral...