The electronic structure of molecules, yielding a large amount of the correlation energy, was studied using a simple correlated wave function. The application of the JAGP to the lithium molecule was also discussed. An extension of the stochastic reconfiguration method was also discussed. The method is applied to several molecules from Li2 to benzene by obtaining total energies, bond lengths and binding energies comparable with much more demanding multiconfiguration schemes
We have developed a version of generalized valence bond (GVB) that overcomes the major weakness of t...
CONSPECTUS: Ab initio modeling of matter has become a pillar of chemical research: with ever-increas...
Earlier definitions of valencies of atoms, molecules, and molecular orbitals are extended to configu...
The electronic structure of molecules, yielding a large amount of the correlation energy, was studie...
Our aim is to study the electronic wave function and the correlation energy of a low dimensional sys...
We introduce a simple generalization of the well-known geminal wave function already applied in quan...
Although mean field theories have been very successful to predict a wide range of properties for sol...
We introduce a method for accurate quantum chemical calculations based on a simple variational wave ...
A simplified method of determining the molecular correlation energy by two separate calculations, on...
This chapter outlines the basic elements of Spin-Coupled Generalized Valence Bond (SCGVB) theory, in...
There has been dramatic progress in the development of electron correlation techniques for the accur...
We propose a new class of multideterminantal Jastrow–Slater wave functions constructed with localize...
Post Hartree-Fock methods provide a well tested and theoretically sound route to the determination o...
Rearranging chemical bonds is chemistry. Simulating chemical reactions is an expensive and complex p...
Rearranging chemical bonds is chemistry. Simulating chemical reactions is an expensive and complex p...
We have developed a version of generalized valence bond (GVB) that overcomes the major weakness of t...
CONSPECTUS: Ab initio modeling of matter has become a pillar of chemical research: with ever-increas...
Earlier definitions of valencies of atoms, molecules, and molecular orbitals are extended to configu...
The electronic structure of molecules, yielding a large amount of the correlation energy, was studie...
Our aim is to study the electronic wave function and the correlation energy of a low dimensional sys...
We introduce a simple generalization of the well-known geminal wave function already applied in quan...
Although mean field theories have been very successful to predict a wide range of properties for sol...
We introduce a method for accurate quantum chemical calculations based on a simple variational wave ...
A simplified method of determining the molecular correlation energy by two separate calculations, on...
This chapter outlines the basic elements of Spin-Coupled Generalized Valence Bond (SCGVB) theory, in...
There has been dramatic progress in the development of electron correlation techniques for the accur...
We propose a new class of multideterminantal Jastrow–Slater wave functions constructed with localize...
Post Hartree-Fock methods provide a well tested and theoretically sound route to the determination o...
Rearranging chemical bonds is chemistry. Simulating chemical reactions is an expensive and complex p...
Rearranging chemical bonds is chemistry. Simulating chemical reactions is an expensive and complex p...
We have developed a version of generalized valence bond (GVB) that overcomes the major weakness of t...
CONSPECTUS: Ab initio modeling of matter has become a pillar of chemical research: with ever-increas...
Earlier definitions of valencies of atoms, molecules, and molecular orbitals are extended to configu...