Galactic extinction laws – I. A global NIR analysis with 2MASS photometry

Author:

Maíz Apellániz J1ORCID,Pantaleoni González M12,Barbá R H3ORCID,García-Lario P4,Nogueras-Lara F5ORCID

Affiliation:

1. Centro de Astrobiología, CSIC-INTA, Campus ESAC, Camino bajo del castillo s/n, E-28692 Villanueva de la Cañada, Madrid, Spain

2. Departamento de Astrofísica y Física de la Atmósfera, Universidad Complutense de Madrid, E-28040 Madrid, Spain

3. Departamento de Astronomía, Universidad de La Serena, Av. cisternas 1200 Norte, La Serena, Chile

4. European Space Astronomy Centre (ESA/ESAC), camino bajo del castillo s/n, E-28692 Villanueva de la Cañada, Madrid, Spain

5. Max Planck Institute for Astronomy, Königstuhl 17, D-69117 Heidelberg, Germany

Abstract

ABSTRACT We have started an ambitious program to determine if the full diversity of extinction laws is real or if some of it is due to calibration or methodological issues. Here we start by analysing the information on near-infrared (NIR) extinction in a Two Micron All-Sky Survey (2MASS) stellar sample with good quality photometry and very red colours. We calculate the extinction at 1 μm, A1, and the power-law exponent, α (Aλ = A1λ−α), for the 2MASS stars located in the extinction trajectory in the H − K versus J − H plane expected for red giants with A1 > 5 mag. We test the validity of the assumption about the nature of those stars, whether a single or multiple values of α are needed, and the spatial variations of the results. Most (∼83 per cent) of those stars can indeed be explained by high-extinction red giants and the rest are composed of extinguished asymptotic giant branch (AGB) stars (mostly O-rich), blended sources, and smaller numbers of other objects, a contaminant fraction that can be reduced with the help of Gaia Data Release 2 (DR2) data. Galactic red giants experience a NIR extinction with α ∼ 2.27 and an uncertainty of a few hundredths of a magnitude. There is no significant spread in α even though our sample is widely distributed and has a broad range of extinctions. Differences with previous results are ascribed to the treatment of non-linear photometric effects and/or the contaminant correction. Future research should concentrate in finding the correct functional form for the NIR extinction law. In the appendix, we detail the treatment of non-linear photometric effects in the 2MASS bands.

Funder

Ministerio de Ciencia y Tecnología

Deutsche Forschungsgemeinschaft

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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