arrow
Return

Introducing k-point parallelism into VASP

delete2012-08-01
delete31
delete
OA
AI
A
A. Maniopoulou
E
Erlend R. M. Davidson
R
Ricardo Grau‐Crespo
A
Aron Walsh
I
Ian J. Bush
C
C. Richard A. Catlow
S
Scott M. Woodley *
DOI:10.1016/j.cpc.2012.03.009delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
For many years ab initio electronic structure calculations based upon density functional theory have been one of the main application areas in high performance computing (HPC). Typically, the Kohn-Sham equations are solved by minimisation of the total energy functional, using a plane wave basis set for valence electrons and pseudopotentials to obviate the representation of core states. One of the best known and widely used software for performing this type of calculation is the Vienna Ab initio Simulation Package, VASP, which currently offers a parallelisation strategy based on the distribution of bands and plane wave coefficients over the machine processors. We report here an improved parallelisation strategy that also distributes the k-point sampling workload over different processors, allowing much better scalability for massively parallel computers. As a result, some difficult problems requiring large k-point sampling become tractable in current computing facilities. We showcase three important applications: dielectric function of epitaxially strained indium oxide, solution energies of tetravalent dopants in metallic VO2, and hydrogen on graphene. (C) 2012 Elsevier B.V. All rights reserved.
Keywords:
Parallelization
k-Points
Plane waves
DFT
Methods of electronic structure calculations
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Computer Physics Communications cover
Computer Physics Communications
IF:
3.4
Papers:
1.2W
Citations:
3.7W

Organization

U
University College London
Scholars:
7.9W
Papers: 6.2W
Citations: 15.7W
U
university of london
Scholars:
21.5W
Papers: 19.7W
Citations: 305