English

Correlation among extinction efficiency and other parameters in an aggregate dust model

Earth and Planetary Astrophysics 2017-11-08 v1

Abstract

We study the extinction properties of highly porous BCCA dust aggregates in a wide range of complex refractive indices (1.4n2.01.4 \le n \le 2.0, 0.001k1.00.001 \le k \le 1.0) and wavelength (0.11μmλ3.4μm0.11\mu m \le \lambda \le 3.4\mu m). An attempt has been made for the first time to investigate the correlation among extinction efficiency (QextQ_{ext}), the composition of dust aggregates (n,kn, k), the wavelength of radiation (λ\lambda) and size parameter of the monomers (xx). If kk is fixed at any value between 0.001 and 1.0, QextQ_{ext} increases with increase of nn from 1.4 to 2.0. QextQ_{ext} and nn are correlated via \emph{linear} regression when the cluster size is small whereas the correlation is \emph{quadratic} at moderate and higher sizes of the cluster. This feature is observed at all wavelengths (UV to optical to infrared). We also find that the variation of QextQ_{ext} with nn is very small when λ\lambda is high. When nn is fixed at any value between 1.4 and 2.0, it is observed that QextQ_{ext} and kk are correlated via polynomial regression equation (of degree 1, 2, 3 or 4), where the degree of the equation depends on the cluster size, nn and λ\lambda. The correlation is linear for small size and quadratic/cubic/quartic for moderate and higher sizes. We have also found that QextQ_{ext} and xx are correlated via a polynomial regression (of degree 3,4 or 5) for all values of nn. The degree of regression is found to be nn and kk-dependent. The set of relations obtained from our work can be used to model interstellar extinction for dust aggregates in a wide range of wavelengths and complex refractive indices.

Keywords

Cite

@article{arxiv.1708.07926,
  title  = {Correlation among extinction efficiency and other parameters in an aggregate dust model},
  author = {Tanuj Kumar Dhar and Himadri Sekhar Das},
  journal= {arXiv preprint arXiv:1708.07926},
  year   = {2017}
}

Comments

16 figures, 8 Tables (Accepted in Research in Astronomy & Astrophysics Journal) (2017)

R2 v1 2026-06-22T21:24:07.268Z