<div><div>Many-body Green’s functions or propagators are powerful tools in the description of electronic structure. Propagators provide a direct path to calculate and interpret differences of energies, electronic properties and Dyson orbitals, with the advantage that the information which can be obtained is not limited to the ground state. Electron propagator methods have shown enormous success in providing practical means of calculating electron binding energies, Dyson orbitals, and ground-state properties from first principles. New approximations based on propagators can be derived through the construction of diagrams or using super-operator theory. Super-operator theory provides a precise, rigorous, consistent and flexible alternative to...
Machine learning methods are applied to finding the Green's function of the Anderson impurity model,...
A general method of obtaining accurate and useful many-electron wave functions for atoms and molecul...
We implement two different ab initio electronic structure methods: Hartree-Fock (HF), and quantum va...
This work is concerned with the accurate numerical simulation of the many-electron problem, which in...
An outstanding challenge in chemical computation is the many-electron problem where computational me...
The combination of modern scientific computing with electronic structure theory can lead to an unpre...
Program year: 1994/1995Digitized from print original stored in HDRThe simplest description of propag...
The combination of modern scientific computing with electronic structure theory can lead to an unpre...
Machine learning (ML) approximations to density functional theory (DFT) potential energy surfaces (P...
Through the use of symbolic algebra, implemented in a program, the algebraic expression of the eleme...
In this work we propose an extended propagator theory for electrons and other types of quantum parti...
Recent progress in the mathematical physics and quantum chemistry of Coulomb Green's functions is su...
Computational chemistry has become an important tool to predict and understand molecular properties ...
The electronic interactions which are responsible for electron transfer in proteins are treated usin...
Development and applications of neural network (NN)-based approaches for representing potential ener...
Machine learning methods are applied to finding the Green's function of the Anderson impurity model,...
A general method of obtaining accurate and useful many-electron wave functions for atoms and molecul...
We implement two different ab initio electronic structure methods: Hartree-Fock (HF), and quantum va...
This work is concerned with the accurate numerical simulation of the many-electron problem, which in...
An outstanding challenge in chemical computation is the many-electron problem where computational me...
The combination of modern scientific computing with electronic structure theory can lead to an unpre...
Program year: 1994/1995Digitized from print original stored in HDRThe simplest description of propag...
The combination of modern scientific computing with electronic structure theory can lead to an unpre...
Machine learning (ML) approximations to density functional theory (DFT) potential energy surfaces (P...
Through the use of symbolic algebra, implemented in a program, the algebraic expression of the eleme...
In this work we propose an extended propagator theory for electrons and other types of quantum parti...
Recent progress in the mathematical physics and quantum chemistry of Coulomb Green's functions is su...
Computational chemistry has become an important tool to predict and understand molecular properties ...
The electronic interactions which are responsible for electron transfer in proteins are treated usin...
Development and applications of neural network (NN)-based approaches for representing potential ener...
Machine learning methods are applied to finding the Green's function of the Anderson impurity model,...
A general method of obtaining accurate and useful many-electron wave functions for atoms and molecul...
We implement two different ab initio electronic structure methods: Hartree-Fock (HF), and quantum va...