The principal challenge in using explicitly correlated wavefunctions for molecules is the evaluation of nonfactorizable integrals over the coordinates of three or more electrons. Immense progress was made in tackling this problem through the introduction of a single-particle resolution of the identity. Decompositions of sufficient accuracy can be achieved, but only with large auxiliary basis sets. Density fitting is an alternative integral approximation scheme, which has proven to be very reliable for two-electron integrals. Here, we extend density fitting to the treatment of all three-electron integrals that appear at the MP2-F12/3*A level of theory. We demonstrate that the convergence of energies with respect to auxiliary basis size is mu...
An asymptotic-expansion method is presented for the evaluation of correlated three-electron integral...
The contributions of the correlated and uncorrelated components of the electron-pair density to atom...
A key component in calculations of exchange and correlation energies is the Coulomb operator, which ...
Auxiliary basis sets specifically matched to the correlation consistent cc- pVnZ-F12 and cc-pCVnZ-F1...
The computational complexity of ab initio electronic structure methods can be de-creased through the...
Auxiliary basis sets specifically matched to the correlation consistent cc-pV<i>n</i>Z-F12 and cc-pC...
Auxiliary basis sets specifically matched to the correlation consistent cc- pVnZ-F12 and cc-pCVnZ-F1...
This thesis improves computational efficiency in two domains of quantum chemistry. Firstly, we impr...
The properties of chemical systems can be determined computationally by solving the physical equatio...
The observation that a molecular electron density is close to the superposition of its constituent a...
Density functional theory (DFT) is the de facto method for the electronic structure of weakly correl...
The density-fitting technique for approximating electron-repulsion integrals relies on the quality o...
Using Cholesky decomposition and density fitting to approximate the electron repulsion integrals, an...
In this work we present the formulas for the calculation of exact three-center electron sharing indi...
Using Cholesky decomposition and density fitting to approximate the electron repulsion integrals, an...
An asymptotic-expansion method is presented for the evaluation of correlated three-electron integral...
The contributions of the correlated and uncorrelated components of the electron-pair density to atom...
A key component in calculations of exchange and correlation energies is the Coulomb operator, which ...
Auxiliary basis sets specifically matched to the correlation consistent cc- pVnZ-F12 and cc-pCVnZ-F1...
The computational complexity of ab initio electronic structure methods can be de-creased through the...
Auxiliary basis sets specifically matched to the correlation consistent cc-pV<i>n</i>Z-F12 and cc-pC...
Auxiliary basis sets specifically matched to the correlation consistent cc- pVnZ-F12 and cc-pCVnZ-F1...
This thesis improves computational efficiency in two domains of quantum chemistry. Firstly, we impr...
The properties of chemical systems can be determined computationally by solving the physical equatio...
The observation that a molecular electron density is close to the superposition of its constituent a...
Density functional theory (DFT) is the de facto method for the electronic structure of weakly correl...
The density-fitting technique for approximating electron-repulsion integrals relies on the quality o...
Using Cholesky decomposition and density fitting to approximate the electron repulsion integrals, an...
In this work we present the formulas for the calculation of exact three-center electron sharing indi...
Using Cholesky decomposition and density fitting to approximate the electron repulsion integrals, an...
An asymptotic-expansion method is presented for the evaluation of correlated three-electron integral...
The contributions of the correlated and uncorrelated components of the electron-pair density to atom...
A key component in calculations of exchange and correlation energies is the Coulomb operator, which ...