We present a generalization of the divide–expand–consolidate (DEC) framework for local coupled-cluster calculations to periodic systems and test it at the second-order Møller–Plesset (MP2) level of theory. For simple model systems with periodicity in one, two, and three dimensions, comparisons with extrapolated molecular calculations and the local MP2 implementation in the Cryscor program show that the correlation energy errors of the extended DEC (X-DEC) algorithm can be controlled through a single parameter, the fragment optimization threshold. Two computational bottlenecks are identified: the size of the virtual orbital spaces and the number of pair fragments required to achieve a given accuracy of the correlation energy. For the latter,...
© 2005 American Institute of Physics. The electronic version of this article is the complete one and...
Dynamic electron correlation methods are known to have a computational cost that scales with a high ...
ABSTRACT: Molecular mechanics and dynamics simulations use distance based cutoff approximations for ...
Local approximations facilitate the application of post-Hartree–Fock methods in the condensed phase,...
We present a periodic/finite-cluster interface for fragment-based direct local ring-coupled-cluster ...
The cluster-in-molecule (CIM) method was extended to systems with periodic boundary conditions (PBCs...
A method for accurate calculations of the cohesive energy of molecular crystals is presented. The co...
In this article, the cluster-in-molecule (CIM) local correlation approach for periodic systems with ...
A general-order local coupled-cluster (CC) method is presented which has the potential to provide ac...
Accurate energetic modeling of large molecular systems is always desired by chemists. For example, l...
The atomic orbital basis set limit is approached in periodic correlated calculations for solid LiH. ...
With the aim of systematically comparing two popular approaches to density functional theory – all-e...
Quantum Chemistry constitutes an extensive framework for accurately simulating the electronic wavefu...
The high computational scaling with the basis set size and the number of correlated electrons is a b...
An approximate coupled cluster singles and doubles model is presented, denoted CC2. The CC2 total en...
© 2005 American Institute of Physics. The electronic version of this article is the complete one and...
Dynamic electron correlation methods are known to have a computational cost that scales with a high ...
ABSTRACT: Molecular mechanics and dynamics simulations use distance based cutoff approximations for ...
Local approximations facilitate the application of post-Hartree–Fock methods in the condensed phase,...
We present a periodic/finite-cluster interface for fragment-based direct local ring-coupled-cluster ...
The cluster-in-molecule (CIM) method was extended to systems with periodic boundary conditions (PBCs...
A method for accurate calculations of the cohesive energy of molecular crystals is presented. The co...
In this article, the cluster-in-molecule (CIM) local correlation approach for periodic systems with ...
A general-order local coupled-cluster (CC) method is presented which has the potential to provide ac...
Accurate energetic modeling of large molecular systems is always desired by chemists. For example, l...
The atomic orbital basis set limit is approached in periodic correlated calculations for solid LiH. ...
With the aim of systematically comparing two popular approaches to density functional theory – all-e...
Quantum Chemistry constitutes an extensive framework for accurately simulating the electronic wavefu...
The high computational scaling with the basis set size and the number of correlated electrons is a b...
An approximate coupled cluster singles and doubles model is presented, denoted CC2. The CC2 total en...
© 2005 American Institute of Physics. The electronic version of this article is the complete one and...
Dynamic electron correlation methods are known to have a computational cost that scales with a high ...
ABSTRACT: Molecular mechanics and dynamics simulations use distance based cutoff approximations for ...