arXiv · 1402.7132
Fractal Signatures in Analogs of Interplanetary Dust Particles
Abstract
Interplanetary dust particles (IDPs) are an important constituent of the earth's stratosphere, interstellar and interplanetary medium, cometary comae and tails, etc. Their physical and optical characteristics are significantly influenced by the morphology of silicate aggregates which form the core in IDPs. In this paper we reinterpret scattering data from laboratory analogs of cosmic silicate aggregates created by Volten et al. \cite{volten2007}, to extract their morphological features. By evaluating the structure factor, we find that the aggregates are mass fractals with a mass fractal dimension $d_{m} \simeq 1.75$. The same fractal dimension also characterizes clusters obtained from {\it diffusion limited aggregation} (DLA). This suggests that the analogs are formed by an irreversible aggregation of stochastically-transported silicate particles
Explore related subjects
Keep this discovery
Nisha Katyal, Varsha Banerjee, Sanjay Puri. 2014-02-28. Fractal Signatures in Analogs of Interplanetary Dust Particles. https://doi.org/10.1016/j.jqsrt.2014.01.017
Cite the original work for its findings. Save a collection to share your selection of sources.