An efficient deformation-based global optimization method (self-consistentbasin-to-deformed-basin mapping (SCBDBM)). Application to Lennard-Jones atomic clusters
J. Pillardy et al., An efficient deformation-based global optimization method (self-consistentbasin-to-deformed-basin mapping (SCBDBM)). Application to Lennard-Jones atomic clusters, J PHYS CH A, 103(46), 1999, pp. 9370-9377
A recently proposed method to surmount the multiple-minima problem in prote
in folding is applied here to global optimization of Lennard-Jones atomic c
lusters. The method, self-consistent basin-to-deformed-basin mapping (SCBDB
M), locates a group of large basins containing low-energy minima (hereafter
referred to as superbasins) in the original energy surface by coupling the
superbasins in the original surface to basins in a highly deformed energy
surface (which contains a significantly reduced number of minima, compared
to the original rugged energy surface). Various kinds of deformation based
on the distance scaling method (DSM) have been tested. The method was able
to locate all the lowest-energy structures of Lennard-Jones atomic clusters
with a size of up to 100 atoms, except for clusters of 75-77 atoms. In the
se cases, the method found the previously known second-to-the-lowest energy
structures.