A general-order local coupled-cluster (CC) method is presented which has the potential to provide accurate correlation energies for extended systems. Our method combines the cluster-in-molecule approach of Li and co-workers [J. Chem. Phys. 131, 114109 (2009)] with the frozen natural orbital (NO) techniques widely used for the cost reduction of correlation methods. The occupied molecular orbitals (MOs) are localized, and for each occupied MO a local subspace of occupied and virtual orbitals is constructed using approximate Moller-Plesset NOs. The CC equations are solved and the correlation energies are calculated in the local subspace for each occupied MO, while the total correlation energy is evaluated as the sum of the individual contribut...
The cluster-in-molecule (CIM) method was extended to systems with periodic boundary conditions (PBCs...
An efficient local coupled cluster method with single and double excitation operators and perturbati...
The domain-based local pair-natural orbital coupled-cluster (DLPNO-CC) theory has recently emerged a...
Local correlation theories have been developed in two main flavors: (1) “direct” local correlation m...
Local correlation theories have been developed in two main flavors: (1) “direct” local correlation m...
This paper reports the development of a local variant of Mukherjee’s state-specific multireference c...
In previous publications, it was shown that an efficient local coupled cluster method with single- a...
In this article, the cluster-in-molecule (CIM) local correlation approach for periodic systems with ...
We have investigated the efficacy of two recently proposed variations of the pair-natural-orbital ap...
Today, coupled-cluster (CC) theory has emerged as the most accurate, widely applicable approach for ...
An improved cluster-in-molecule (CIM) local correlation approach is developed to allow electron corr...
coupled cluster We give a detailed description of recent developments in reduced scaling ab initio m...
One of the most promising methods for surmounting the high-degree polynomial scaling wall associated...
The accuracy of local correlation calculations can be controlled by the size of the virtual orbital ...
The linear-scaling local coupled cluster method DLPNO-CCSD(T) allows calculations on systems contain...
The cluster-in-molecule (CIM) method was extended to systems with periodic boundary conditions (PBCs...
An efficient local coupled cluster method with single and double excitation operators and perturbati...
The domain-based local pair-natural orbital coupled-cluster (DLPNO-CC) theory has recently emerged a...
Local correlation theories have been developed in two main flavors: (1) “direct” local correlation m...
Local correlation theories have been developed in two main flavors: (1) “direct” local correlation m...
This paper reports the development of a local variant of Mukherjee’s state-specific multireference c...
In previous publications, it was shown that an efficient local coupled cluster method with single- a...
In this article, the cluster-in-molecule (CIM) local correlation approach for periodic systems with ...
We have investigated the efficacy of two recently proposed variations of the pair-natural-orbital ap...
Today, coupled-cluster (CC) theory has emerged as the most accurate, widely applicable approach for ...
An improved cluster-in-molecule (CIM) local correlation approach is developed to allow electron corr...
coupled cluster We give a detailed description of recent developments in reduced scaling ab initio m...
One of the most promising methods for surmounting the high-degree polynomial scaling wall associated...
The accuracy of local correlation calculations can be controlled by the size of the virtual orbital ...
The linear-scaling local coupled cluster method DLPNO-CCSD(T) allows calculations on systems contain...
The cluster-in-molecule (CIM) method was extended to systems with periodic boundary conditions (PBCs...
An efficient local coupled cluster method with single and double excitation operators and perturbati...
The domain-based local pair-natural orbital coupled-cluster (DLPNO-CC) theory has recently emerged a...