The effect of compression on the global optimization of atomic clusters release_uljs4fsd3fhaxaf4osmft2fgry

by Jonathan Doye

Released as a article .

2000  

Abstract

Recently, Locatelli and Schoen proposed a transformation of the potential energy that aids the global optimization of Lennard-Jones clusters with non-icosahedral global minima. These cases are particularly difficult to optimize because the potential energy surface has a double funnel topography with the global minimum at the bottom of the narrower funnel. Here we analyse the effect of this type of transformation on the topography of the potential energy surface. The transformation, which physically corresponds to a compression of the cluster, firstly reduces the number of stationary points on the potential energy surface. Secondly, we show that for a 38-atom cluster with a face-centred-cubic global minimum the transformation causes the potential energy surface to become increasingly dominated by the funnel associated with the global minimum. The transformation has been incorporated in the basin-hopping algorithm using a two-phase approach.
In text/plain format

Archived Files and Locations

application/pdf   1.5 MB
file_ax2mskftobdytdo6rfb5glbqgy
archive.org (archive)
web.archive.org (webarchive)
arxiv.org (repository)
core.ac.uk (web)
Read Archived PDF
Preserved and Accessible
Type  article
Stage   submitted
Date   2000-01-06
Version   v1
Language   en ?
Work Entity
access all versions, variants, and formats of this works (eg, pre-prints)
Catalog Record
Revision: 11121058-11fa-4819-adc3-7cd3847036a0
API URL: JSON