The energy usually serves as a yardstick in assessing the performance of approximate methods in computational chemistry. After all, these methods are mostly used for the calculation of the electronic energy of chemical systems. However, computational methods should be also aimed at reproducing other properties, such strategy leading to more robust approximations with a wider range of applicability. In this study, we suggest a battery of ten tests with the aim to analyze density matrix functional approximations (DMFAs), including several properties that the exact functional should satisfy. The tests are performed on a model system with varying electron correlation, carrying a very small computational effort. Our results not only put forward ...
The subject of this study is the exchange-correlation-energy functional of reduced density-matrix fu...
The generalized gradient approximation (GGA) corrects many of the shortcomings of the local spin-den...
The relation of Kohn-Sham (KS) orbital energies to ionization energies and electron affinities is di...
Accurate descriptions of the electronic properties of molecules, solids and other materials are cruc...
Density functional theory or DFT is presently the most popular route for computing the electronic st...
Density functional theory (DFT) is a computational quantum mechanical modeling used in physics, chem...
Density functional theory (DFT) has grown to become by far the most widely applied method in the mod...
Density functional theory is a successful theory used in physics, chemistry and nanoscience to desc...
The development of approximate exchange-correlation functionals is critical for modern density funct...
© 2021 Nisha MehtaThe development of density functional approximations (DFAs) is a very active resea...
An exchange-correlation energy functional involving fractional power of the one-body reduced density...
An exchange-correlation energy functional involving fractional power of the one-body reduced density...
Researchers carrying out calculations using the DFT method face the problem of the correct choice of...
The subject of this study is the exchange-correlation-energy functional of reduced density-matrix fu...
Density-functional theory (DFT) is a rigorous and (in principle) exact framework for the description...
The subject of this study is the exchange-correlation-energy functional of reduced density-matrix fu...
The generalized gradient approximation (GGA) corrects many of the shortcomings of the local spin-den...
The relation of Kohn-Sham (KS) orbital energies to ionization energies and electron affinities is di...
Accurate descriptions of the electronic properties of molecules, solids and other materials are cruc...
Density functional theory or DFT is presently the most popular route for computing the electronic st...
Density functional theory (DFT) is a computational quantum mechanical modeling used in physics, chem...
Density functional theory (DFT) has grown to become by far the most widely applied method in the mod...
Density functional theory is a successful theory used in physics, chemistry and nanoscience to desc...
The development of approximate exchange-correlation functionals is critical for modern density funct...
© 2021 Nisha MehtaThe development of density functional approximations (DFAs) is a very active resea...
An exchange-correlation energy functional involving fractional power of the one-body reduced density...
An exchange-correlation energy functional involving fractional power of the one-body reduced density...
Researchers carrying out calculations using the DFT method face the problem of the correct choice of...
The subject of this study is the exchange-correlation-energy functional of reduced density-matrix fu...
Density-functional theory (DFT) is a rigorous and (in principle) exact framework for the description...
The subject of this study is the exchange-correlation-energy functional of reduced density-matrix fu...
The generalized gradient approximation (GGA) corrects many of the shortcomings of the local spin-den...
The relation of Kohn-Sham (KS) orbital energies to ionization energies and electron affinities is di...