Optical Properties of Complex Dust Grains
Abstract
Dust particles in space may appear as clusters of individual grains. The morphology of these clusters could be of a fractal or more compact nature. To investigate how the cluster morphology influences the calculated extinction of different clusters in the wavelength range 0.1 - 100 micron, we have preformed extinction calculations of three-dimensional clusters consisting of identical touching spherical particles arranged in three different geometries: prefractal, simple cubic and face-centered cubic. In our calculations we find that the extinction of prefractal and compact clusters are of the same order of magnitude. For the calculations, we have performed an in-depth comparison of the theoretical predictions of extinction coefficients of multi-sphere clusters derived by rigorous solutions, on the one hand, and popular discrete-dipole approximations, on the other. This comparison is essential if one is to assess the degree of reliability of model calculations made with the discrete-dipole approximations, which appear in the literature quite frequently without an adequate accounting of their validity.
Cite
@article{arxiv.astro-ph/0310343,
title = {Optical Properties of Complex Dust Grains},
author = {A. C. Andersen and J. A. Sotelo and G. A. Niklasson and V. N. Pustovit},
journal= {arXiv preprint arXiv:astro-ph/0310343},
year = {2007}
}
Comments
19 pages, 10 figures, invited paper in Astrophysics of Dust, (eds.) A.N. Witt, B.T. Draine & G.C. Clayton, ASP Conference Series XX, 19 pages in press