Rough droplet model for spherical metal clusters
arXiv:cond-mat/9709341 · doi:10.1103/PhysRevB.58.4942
Abstract
We study the thermally activated oscillations, or capillary waves, of a neutral metal cluster within the liquid drop model. These deformations correspond to a surface roughness which we characterize by a single parameter . We derive a simple analytic approximate expression determining as a function of temperature and cluster size. We then estimate the induced effects on shell structure by means of a periodic orbit analysis and compare with recent data for shell energy of sodium clusters in the size range . A small surface roughness Å~ is seen to give a reasonable account of the decrease of amplitude of the shell structure observed in experiment. Moreover -- contrary to usual Jahn-Teller type of deformations -- roughness correctly reproduces the shape of the shell energy in the domain of sizes considered in experiment.
20 pages, 4 figures, important modifications of the presentation, to appear in Phys. Rev. B