Abstract
While the shape of the extinction curve in the infrared is considered to be set and the extinction ratios between infrared bands are usually taken to be approximately constant, a number of recent studies point to either a spatially variable behavior of the exponent of the power law or a different extinction law altogether. In this paper, we propose a method to analyze the overall behavior of the interstellar extinction by means of the red-clump population, and we apply it to those areas of the Milky Way where the presence of interstellar matter is heavily felt: areas located in 5° < l < 30°and b = 0°. We show that the extinction ratios traditionally used for the near infrared could be inappropriate for the inner Galaxy and we analyze the behavior of the extinction law from 1 μm to 8 μm. © 2014. The American Astronomical Society. All rights reserved..
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González-Fernández, C., Asensio Ramos, A., Garzón, F., Cabrera-Lavers, A., & Hammersley, P. L. (2014). Infrared extinction in the inner milky way through red clump giants. Astrophysical Journal, 782(2). https://doi.org/10.1088/0004-637X/782/2/86
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