PubMed Health⌕ Search

Biomedical subjects

CM Sorensen

Publications and source records attributed to CM Sorensen.

At least 19 recordsLinked to original sources

The Effect of Overlap between Monomers on the Determination of Fractal Cluster Morphology

Diffusion limited cluster aggregate (DLCA) morphology is studied as a function of monomeric particle overlap for finite sized clusters. The morphology is parameterized by both the fractal dimension D and the prefactor k0. For clusters created on a three-dimensional cubic lattice we find D = 1.80 ± 0.03 and k0 = 1.30 ± 0.07 when the spherical monomers are in point contact. Both these values increase as overlap increases. Also presented is an analysis of the two-dimensional projection of these clusters in order to facilitate electron micrograph images of real clusters. Quantitative relations between actual three-dimensional cluster parameters such as cluster radius of gyration, fractal dimension and number of monomers per aggregate, and measurable two-dimensional quantities such as longest lengths and projected area are given as a function of monomer overlap. Relationships between lengths can be explained only by use of the proper density correlation function and accounting for cluster anisotropy. Finally, we make an unsuccessful attempt to find the source of recent experimental discrepancies in the prefactor k0 in terms of a possible unknown degree of overlap. Copyright 1997Academic Press

Journal Article↗

The Prefactor of Fractal Aggregates

The prefactor k0 of the fractal aggregate scaling relationship N = k0(Rg/a)Df is determined for both Diffusion Limited and Diffusion Limited Cluster Aggregation processes in spatial dimensions of 2, 3, 4, and 5. For the physically relevant case of DLCA aggregates in three dimensions we find k0 = 1.19 ± 0.1 when Df = 1.82 ± 0.04. Comparison of all aggregation types shows that the prefactor k0 displays uniform trends with the fractal dimension Df. Attempts to explain these trends are made based on either a common small N limit for all clusters or the packing of spheres in space.

Journal Article↗

Tang et al. reply.

Explore the source record for details and available documents.

Journal Article↗