Modeling the Infrared Extinction toward the Galactic Center
Abstract
We model the ~1--19 infrared (IR) extinction curve toward the Galactic Center (GC) in terms of the standard silicate-graphite interstellar dust model. The grains are taken to have a power law size distribution with an exponential decay above some size. The best-fit model for the GC IR extinction constrains the visual extinction to be Av~38--42 mag. The limitation of the model, i.e., its difficulty in simultaneously reproducing both the steep ~1--3 near-IR extinction and the flat ~3--8 mid-IR extinction is discussed. We argue that this difficulty could be alleviated by attributing the extinction toward the GC to a combination of dust in different environments: dust in diffuse regions (characterized by small Rv and steep near-IR extinction), and dust in dense regions (characterized by large Rv and flat UV extinction).
Cite
@article{arxiv.1305.7137,
title = {Modeling the Infrared Extinction toward the Galactic Center},
author = {Jian Gao and Aigen Li and B. W. Jiang},
journal= {arXiv preprint arXiv:1305.7137},
year = {2015}
}
Comments
13pages, 4figures, accepted by Earth, Planets and Space