In this work we consider a numerically solvable model of a two-electron diatomic molecule to study a recently proposed approximation based on the density functional theory of so-called strictly correlated electrons (SCE). We map out the full two-particle wave function for a wide range of bond distances and interaction strengths and obtain analytic results for the two-particle states and eigenenergies in various limits of strong and weak interactions, and in the limit of large bond distance. We then study the so-called Hartree-exchange-correlation (Hxc) kernel of time-dependent density functional theory which is a key ingredient in calculating excitation energies. We study an approximation based on adiabatic SCE (ASCE) theory which was...
The present work provides a generalization of Mayer's energy decomposition for the density-functiona...
For the paradigmatic case of H<sub>2</sub> dissociation, we compare state-of-the-art many-body pertu...
We study one-dimensional model chemical systems (representative of their three-dimensional counterpa...
In this work we consider a numerically solvable model of a two-electron diatomic molecule to study a...
Local and semilocal functional like the local density (LDA) and generalized gradient approximations ...
Using the dual Kantorovich formulation, we compute the strictly correlated electrons (SCE) functiona...
We have calculated the correlation energy of the homogeneous electron gas (HEG) and the dissociation...
We consider an analytically solvable model of two interacting electrons that allows for the calculat...
The exchange-correlation energy in Kohn-Sham density functional theory can be expressed exactly in t...
Although Kohn-Sham (KS) density functional theory (DFT) is an exact theory, able in principle to des...
Bond-breaking excitations ωα are the problematic case of adiabatic time-dependent density functional...
One of the most used methods in condensed matter theory and quantum chemistry for the description of...
The thesis introduces the concept of the adiabatic approximation in relation to the dynamics of the ...
The dissociation of molecules, even the most simple hydrogen molecule, cannot be described accuratel...
We consider the dispersion energy between two well-separated molecules. Provided that exchange over...
The present work provides a generalization of Mayer's energy decomposition for the density-functiona...
For the paradigmatic case of H<sub>2</sub> dissociation, we compare state-of-the-art many-body pertu...
We study one-dimensional model chemical systems (representative of their three-dimensional counterpa...
In this work we consider a numerically solvable model of a two-electron diatomic molecule to study a...
Local and semilocal functional like the local density (LDA) and generalized gradient approximations ...
Using the dual Kantorovich formulation, we compute the strictly correlated electrons (SCE) functiona...
We have calculated the correlation energy of the homogeneous electron gas (HEG) and the dissociation...
We consider an analytically solvable model of two interacting electrons that allows for the calculat...
The exchange-correlation energy in Kohn-Sham density functional theory can be expressed exactly in t...
Although Kohn-Sham (KS) density functional theory (DFT) is an exact theory, able in principle to des...
Bond-breaking excitations ωα are the problematic case of adiabatic time-dependent density functional...
One of the most used methods in condensed matter theory and quantum chemistry for the description of...
The thesis introduces the concept of the adiabatic approximation in relation to the dynamics of the ...
The dissociation of molecules, even the most simple hydrogen molecule, cannot be described accuratel...
We consider the dispersion energy between two well-separated molecules. Provided that exchange over...
The present work provides a generalization of Mayer's energy decomposition for the density-functiona...
For the paradigmatic case of H<sub>2</sub> dissociation, we compare state-of-the-art many-body pertu...
We study one-dimensional model chemical systems (representative of their three-dimensional counterpa...