The current work presents a new single-reference method for capturing at the same time the static and dynamic electron correlation. The starting-point is a determinant wavefunction formed with natural orbitals obtained from a new interacting-pair model. The latter leads to a natural orbital functional (NOF) capable of recovering the complete intra-pair, but only the static inter-pair correlation. Using the solution of the NOF, two new energy functionals are defined for both dynamic ($E^{dyn}$) and static ($E^{sta}$) correlation. $E^{dyn}$ is derived from a modified second-order Møller\textendash Plesset perturbation theory (MP2), while $E^{sta}$ is obtained from the static component of the new NOF. Double counting is avoided by introducing ...
A recently proposed series of corrections to the earliest JK -only functionals has considerably impr...
Perhaps the most important approximations to the electronic structure problem in quantum chemistry a...
International audienceWe develop a new family of electronic structuremethods for capturing at th...
We develop a new family of electronic structure methods for capturing at the same time the dynamic a...
We present a novel method that appropriately handles both dynamical and static electron correlations...
The accurate description of short-range electron correlation represents a fundamental challenge for ...
The account of electron correlation and its efficient separation into dynamic and nondynamic parts p...
It is commonly accepted in the scientific literature that the static correlation energy, <i>E</i><su...
<b>Aim:</b> Calculation of dynamical electron<br>correlation energy within Hartree Fock formalism<br...
Wave functions restricted to electron-pair states are promising models to describe static/nondynamic...
Quantitatively accurate electronic structure calculations rely on the proper description of electron...
Electron correlations in molecules can be divided in short range dynamical correlations, long range ...
Distinguishing between dynamic and nondynamic electron correlation energy is a fundamental concept i...
The theory of Local Correlation Functions has been analyzed in the context of Density Functional The...
The development of post-Hartree–Fock (post-HF) energy decomposition schemes that are able to decompo...
A recently proposed series of corrections to the earliest JK -only functionals has considerably impr...
Perhaps the most important approximations to the electronic structure problem in quantum chemistry a...
International audienceWe develop a new family of electronic structuremethods for capturing at th...
We develop a new family of electronic structure methods for capturing at the same time the dynamic a...
We present a novel method that appropriately handles both dynamical and static electron correlations...
The accurate description of short-range electron correlation represents a fundamental challenge for ...
The account of electron correlation and its efficient separation into dynamic and nondynamic parts p...
It is commonly accepted in the scientific literature that the static correlation energy, <i>E</i><su...
<b>Aim:</b> Calculation of dynamical electron<br>correlation energy within Hartree Fock formalism<br...
Wave functions restricted to electron-pair states are promising models to describe static/nondynamic...
Quantitatively accurate electronic structure calculations rely on the proper description of electron...
Electron correlations in molecules can be divided in short range dynamical correlations, long range ...
Distinguishing between dynamic and nondynamic electron correlation energy is a fundamental concept i...
The theory of Local Correlation Functions has been analyzed in the context of Density Functional The...
The development of post-Hartree–Fock (post-HF) energy decomposition schemes that are able to decompo...
A recently proposed series of corrections to the earliest JK -only functionals has considerably impr...
Perhaps the most important approximations to the electronic structure problem in quantum chemistry a...
International audienceWe develop a new family of electronic structuremethods for capturing at th...