An approximation for the exchange-correlation energy of reduced-density-matrix-functional theory was recently derived from a study of the homogeneous electron gas [N. N. Lathiotakis, N. Helbig, and E. K. U. Gross, Phys. Rev. B 75, 195120 (2007)]. In the present work, we show how this approximation can be extended appropriately to finite systems, where the Wigner Seitz radius rs, the parameter characterizing the constant density of the electron gas, needs to be replaced.We apply the functional to a variety of molecules at their equilibrium geometry and also discuss its performance at the dissociation limit. We demonstrate that, although originally derived from the uniform gas, the approximation performs remarkably well for finite systems
We develop a systematic approach to construct energy functionals of the one-particle reduced density...
Strong electronic correlations are at the heart of many interesting phenomena. For the theoretical d...
The dissociation of molecules, even the most simple hydrogen molecule, cannot be described accuratel...
An approximation for the exchange-correlation energy of reduced-density-matrix-functional theory was...
The subject of this study is the exchange-correlation-energy functional of reduced density-matrix fu...
An exchange-correlation energy functional involving fractional power of the one-body reduced density...
Physically valid and numerically efficient approximations for the exchange and correlation energy ar...
A widely used approximation to the exchange-correlation functional in density functional theory is t...
We derive an intrinsically temperature-dependent approximation to the correlation grand potential fo...
The local density approximation (LDA) constructed through quantum Monte Carlo calculations of the ho...
We show that the expression of the high-density (i.e., small-r s ) correlation energy per electron f...
The increasing interest in the Müller density-matrix-functional theory has led us to a systematic ma...
The exchange-correlation energy in Kohn-Sham density functional theory is expressed as a functional ...
http://arxiv.org/PS_cache/arxiv/pdf/0812/0812.0742v1.pdfThe exchange-correlation energy in Kohn-Sham...
URL:http://link.aps.org/doi/10.1103/PhysRevLett.103.166402 DOI:10.1103/PhysRevLett.103.166402We pre...
We develop a systematic approach to construct energy functionals of the one-particle reduced density...
Strong electronic correlations are at the heart of many interesting phenomena. For the theoretical d...
The dissociation of molecules, even the most simple hydrogen molecule, cannot be described accuratel...
An approximation for the exchange-correlation energy of reduced-density-matrix-functional theory was...
The subject of this study is the exchange-correlation-energy functional of reduced density-matrix fu...
An exchange-correlation energy functional involving fractional power of the one-body reduced density...
Physically valid and numerically efficient approximations for the exchange and correlation energy ar...
A widely used approximation to the exchange-correlation functional in density functional theory is t...
We derive an intrinsically temperature-dependent approximation to the correlation grand potential fo...
The local density approximation (LDA) constructed through quantum Monte Carlo calculations of the ho...
We show that the expression of the high-density (i.e., small-r s ) correlation energy per electron f...
The increasing interest in the Müller density-matrix-functional theory has led us to a systematic ma...
The exchange-correlation energy in Kohn-Sham density functional theory is expressed as a functional ...
http://arxiv.org/PS_cache/arxiv/pdf/0812/0812.0742v1.pdfThe exchange-correlation energy in Kohn-Sham...
URL:http://link.aps.org/doi/10.1103/PhysRevLett.103.166402 DOI:10.1103/PhysRevLett.103.166402We pre...
We develop a systematic approach to construct energy functionals of the one-particle reduced density...
Strong electronic correlations are at the heart of many interesting phenomena. For the theoretical d...
The dissociation of molecules, even the most simple hydrogen molecule, cannot be described accuratel...