Skip to Main Content (Press Enter)

Logo UNIMORE
  • ×
  • Home
  • Degree programmes
  • Modules
  • Jobs
  • People
  • Research Outputs
  • Academic units
  • Third Mission
  • Projects
  • Skills

UNI-FIND
Logo UNIMORE

|

UNI-FIND

unimore.it
  • ×
  • Home
  • Degree programmes
  • Modules
  • Jobs
  • People
  • Research Outputs
  • Academic units
  • Third Mission
  • Projects
  • Skills
  1. Research Outputs

Improving the efficiency of G0W0 calculations with approximate spectral decompositions of dielectric matrices

Academic Article
Publication Date:
2019
Short description:
Improving the efficiency of G0W0 calculations with approximate spectral decompositions of dielectric matrices / Yang, Han; Govoni, Marco; Galli, Giulia. - In: THE JOURNAL OF CHEMICAL PHYSICS. - ISSN 0021-9606. - 151:22(2019), pp. 224102-224102. [10.1063/1.5126214]
abstract:
: Recently, it was shown that the calculation of quasiparticle energies using the G0W0 approximation can be performed without computing explicitly any virtual electronic states, by expanding the Green function and screened Coulomb interaction in terms of the eigenstates of the static dielectric matrix. Avoiding the evaluation of virtual electronic states leads to improved efficiency and ease of convergence of G0W0 calculations. Here, we propose a further improvement of the efficiency of these calculations, based on an approximation of density-density response functions of molecules and solids. The approximation relies on the calculation of a subset of eigenvectors of the dielectric matrix using the kinetic operator instead of the full Hamiltonian, and it does not lead to any substantial loss of accuracy for the quasiparticle energies. The computational savings introduced by this approximation depend on the system, and they become more substantial as the number of electrons increases.
Iris type:
Articolo su rivista
List of contributors:
Yang, Han; Govoni, Marco; Galli, Giulia
Authors of the University:
GOVONI Marco
Handle:
https://iris.unimore.it/handle/11380/1295269
Published in:
THE JOURNAL OF CHEMICAL PHYSICS
Journal
  • Use of cookies

Powered by VIVO | Designed by Cineca | 26.4.5.0