Density functional theory offers accurate structure prediction at acceptable computational cost, but commonly used approximations suffer from delocalization error; this results in inaccurate predictions of quantities such as energy band gaps of finite and bulk systems, energy level alignments, and electron distributions at interfaces. The localized orbital scaling correction (LOSC) was developed to correct delocalization error by using orbitals localized in space and energy. These localized orbitals span both the occupied and unoccupied spaces and can have fractional occupations in order to correct both the total energy and the one-electron energy eigenvalues. We extend the LOSC method to periodic systems, in which the localized orbitals em...
© 2018 American Physical Society. Several approaches to linear-scaling density functional theory (LS...
Advances in our understanding of density functionals have led to the Perdew-Wang 91 (PW91) generaliz...
With the aim of systematically comparing two popular approaches to density functional theory–all-ele...
<p>Density functional theory is a formally exact theory to describe ground state properties due to t...
We applied localized orbital scaling correction (LOSC) in Bethe-Salpeter equation (BSE) to predict a...
A novel nonempirical scaling correction method is developed to tackle the challenge of band gap pred...
Delocalization error is one of the most fundamental and dominant errors that plagues presently used ...
Abstract: Among all the Quantum Mechanics/Molecular Mechanics (QM/MM) methods available to describe ...
Several approaches to linear-scaling density functional theory (LS-DFT) that seek to achieve accurac...
We present an atomic-orbital-based approximate scheme for self-interaction correction (SIC) to the l...
Approximate density functional theory (DFT) suffers from many-electron self-interaction error, other...
The local-density approximation (LDA) together with the half occupation (transitionstate) is notorio...
The Hohenberg-Kohn-Sham (HKS) density functional theory (DFT) is widely used to compute electronic s...
doi:10.1088/0953-8984/16/25/L01 We have reformulated the quantum Monte Carlo (QMC) technique so that...
The Hohenberg-Kohn-Sham (HKS) density functional theory (DFT) is widely used to compute electronic s...
© 2018 American Physical Society. Several approaches to linear-scaling density functional theory (LS...
Advances in our understanding of density functionals have led to the Perdew-Wang 91 (PW91) generaliz...
With the aim of systematically comparing two popular approaches to density functional theory–all-ele...
<p>Density functional theory is a formally exact theory to describe ground state properties due to t...
We applied localized orbital scaling correction (LOSC) in Bethe-Salpeter equation (BSE) to predict a...
A novel nonempirical scaling correction method is developed to tackle the challenge of band gap pred...
Delocalization error is one of the most fundamental and dominant errors that plagues presently used ...
Abstract: Among all the Quantum Mechanics/Molecular Mechanics (QM/MM) methods available to describe ...
Several approaches to linear-scaling density functional theory (LS-DFT) that seek to achieve accurac...
We present an atomic-orbital-based approximate scheme for self-interaction correction (SIC) to the l...
Approximate density functional theory (DFT) suffers from many-electron self-interaction error, other...
The local-density approximation (LDA) together with the half occupation (transitionstate) is notorio...
The Hohenberg-Kohn-Sham (HKS) density functional theory (DFT) is widely used to compute electronic s...
doi:10.1088/0953-8984/16/25/L01 We have reformulated the quantum Monte Carlo (QMC) technique so that...
The Hohenberg-Kohn-Sham (HKS) density functional theory (DFT) is widely used to compute electronic s...
© 2018 American Physical Society. Several approaches to linear-scaling density functional theory (LS...
Advances in our understanding of density functionals have led to the Perdew-Wang 91 (PW91) generaliz...
With the aim of systematically comparing two popular approaches to density functional theory–all-ele...