We present the theory and implementation for computing the (free) energy and its analytical gradients with the Brueckner doubles (BD) coupled cluster method in solution, in combination with the polarizable continuum model of solvation (PCM). The complete model, called PTED, and an efficient approximation, called PTE, are introduced and tested with numerical examples. Implementation details are also discussed. A comparison with the coupled-cluster singles and doubles CCSD-PCM-PTED and CCSD-PCM-PTE schemes, which use Hartree-Fock (HF) orbitals, is presented. The results show that the two PTED approaches are mostly equivalent, while BD-PCM-PTE is shown to be superior to the corresponding CCSD scheme when the HF reference wave function is unsta...
A nearly linear scaling implementation of coupled-cluster with singles and doubles excitations (CCSD...
Mathematical and Physical Sciences: 3rd Place (The Ohio State University Denman Undergraduate Resear...
Continuum solvation models are widely used to accurately estimate solvent effects on energy, structu...
We present the theory and implementation for computing the (free) energy and its analytical gradient...
Coupled cluster theory (CC) provides very accurate estimates of energies and molecular properties. S...
The combination of the coupled cluster (CC) method with the polarizable continuum model (PCM) of sol...
The combination of the coupled cluster (CC) method with the polarizable continuum model (PCM) of sol...
The calculation of vertical electronic transition energies of molecular systems in solution with acc...
The calculation of vertical electronic transition energies of molecular systems in solution with acc...
We present a study of excitation energies in solution at the equation of motioncoupled cluster singl...
We present a study of excitation energies in solution at the equation of motioncoupled cluster singl...
In this work, we benchmark the equation of motion coupled cluster with single and double excitations...
This work reports the first implementation of the frequency dependent linear response (LR) function ...
Polarizable continuum solvation models are nowadays the most popular approach to describe solvent ef...
This work reports the first implementation of the frequency dependent linear response (LR) function ...
A nearly linear scaling implementation of coupled-cluster with singles and doubles excitations (CCSD...
Mathematical and Physical Sciences: 3rd Place (The Ohio State University Denman Undergraduate Resear...
Continuum solvation models are widely used to accurately estimate solvent effects on energy, structu...
We present the theory and implementation for computing the (free) energy and its analytical gradient...
Coupled cluster theory (CC) provides very accurate estimates of energies and molecular properties. S...
The combination of the coupled cluster (CC) method with the polarizable continuum model (PCM) of sol...
The combination of the coupled cluster (CC) method with the polarizable continuum model (PCM) of sol...
The calculation of vertical electronic transition energies of molecular systems in solution with acc...
The calculation of vertical electronic transition energies of molecular systems in solution with acc...
We present a study of excitation energies in solution at the equation of motioncoupled cluster singl...
We present a study of excitation energies in solution at the equation of motioncoupled cluster singl...
In this work, we benchmark the equation of motion coupled cluster with single and double excitations...
This work reports the first implementation of the frequency dependent linear response (LR) function ...
Polarizable continuum solvation models are nowadays the most popular approach to describe solvent ef...
This work reports the first implementation of the frequency dependent linear response (LR) function ...
A nearly linear scaling implementation of coupled-cluster with singles and doubles excitations (CCSD...
Mathematical and Physical Sciences: 3rd Place (The Ohio State University Denman Undergraduate Resear...
Continuum solvation models are widely used to accurately estimate solvent effects on energy, structu...