Searching water megamasers by using mid-infrared spectroscopy (I): Possible mid-infrared indicators

Author:

Lam Man I12,Walcher C Jakob1,Gao Feng3,Yang Ming4ORCID,Li Huan5,Hao Lei6

Affiliation:

1. Leibniz-Institut für Astrophysik Potsdam (AIP), An der Sternwarte 16, D-14482 Potsdam, Germany

2. National Astronomical Observatories, CAS, 20A Datun Rd., Chao-Yang Dist., 100101 Beijing, PR China

3. Max Planck Institute for Extraterrestrial Physics (MPE), Giessenbachstrasse 1, D-85748 Garching, Germany

4. IAASARS, National Observatory of Athens, Vas. Pavlou and I. Metaxa, 15236 Penteli, Greece

5. School of Aerospace Science and Technology, Xidian University, 266 Xinglong Section of Xifeng Road, 710071 Xi’an, PR China

6. Shanghai Astronomical Observatory, 80 Nandan Rd., 200030 Shanghai, PR China

Abstract

ABSTRACT Water megamasers at 22 GHz with a gas disc configuration in galaxies provide the most precise measurements of supermassive black hole masses, as well as independent constraints on the Hubble constant in the nearby universe. The existence of other maser types, such as jet or outflow masers, represents another tracer for AGN science. However, the detection rate of water megamasers in galaxies is extremely low. Over 40 yr, only ∼ 160 galaxies are found to harbour maser emission, and ∼30 per cent of them show features in their maser emission that indicate a disc-like geometry. Therefore, increasing the detection rate of masers is a crucial task to allow expanding on maser studies. We present a comparison of mid-infrared spectroscopic data between a maser galaxy sample and a Seyfert 2 control sample. We find that maser galaxies show significant peculiarities in their mid-infrared spectra: (1) Maser galaxies tend to present stronger silicate absorption at τ9.7 $\mu\mathrm{ m}$ than the control sample, (2) PAH 11.3 $\mu$m emission in maser galaxies is much weaker than in the control sample, (3) spectral indices at 20–30 $\mu$m are steeper in maser galaxies than in the control sample and tend to be mid-infrared enhanced population. We conclude that there may be good indicators in mid-infrared and far-infrared which could differentiate maser and non-maser Seyfert 2 galaxies. Upcoming infrared facilities, such as the James Webb Space Telescope, may be able to exploit these and other useful criteria and tracers for water megamaser observations.

Funder

National Aeronautics and Space Administration

California Institute of Technology

National Science Foundation

U.S. Department of Energy

Max Planck Society

Higher Education Funding Council for England

University of Basel

Case Western Reserve University

University of Chicago

Drexel University

Institute for Advanced Study

Johns Hopkins University

Chinese Academy of Sciences

Los Alamos National Laboratory

New Mexico State University

Ohio State University

University of Pittsburgh

University of Portsmouth

Princeton University

United States Naval Observatory

University of Washington

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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