Gas inflows in the polar ring of NGC 4111: the birth of an AGN

Author:

Hauschild Roier Gabriel R1ORCID,Storchi-Bergmann Thaisa1,McDermid Richard M2,Walsh Jonelle L3,Tan Joanne3,Cohn Jonathan3,Krajnovic Davor4,Greene Jenny5,Valluri Monica6,Gültekin Kayhan6,Thater Sabine7,van de Ven Glenn7ORCID,Gebhardt Karl8,Lützgendorf Nora9,Boizelle Benjamin D310,Ma Chung-Pei11,Barth Aaron J12ORCID

Affiliation:

1. Instituto de Física, Universidade Federal do Rio Grande do Sul , Av. Bento Gonçalves 9500, 91501-970, Porto Alegre, RS, Brazil

2. Astronomy, Astrophysics, and Astrophotonics Research Centre, Department of Physics and Astronomy, Macquarie University , NSW 2109, Australia

3. George P. and Cynthia W. Mitchell Institute for Fundamental Physics and Astronomy, Texas A&M University , 4242 TAMU, College Station, TX 77843, USA

4. Leibniz Institute for Astrophysics , Potsdam 14482, Germany

5. Department of Astrophysical Sciences, Princeton University , NJ 08544, USA

6. Department of Astronomy, University of Michigan , Ann Arbor, MI 48109, USA

7. Department of Astronomy, University of Vienna , Vienna 1180, Austria

8. Department of Astronomy, University of Texas at Austin , Austin, TX 78712-1205, USA

9. European Space Agency , c/o STScI, 3700 San Martin Drive, Baltimore, MD 21218, USA

10. Department of Physics and Astronomy, N283 ESC, Brigham Young University , Provo, UT 84602, USA

11. Department of Astronomy , UC Berkeley, CA 94720-3411, USA

12. Department of Physics and Astronomy, 4129 Frederick Reines Hall, University of California , Irvine, CA 92697, USA

Abstract

ABSTRACT We have used Hubble Space Telescope (HST) images, SAURON Integral Field Spectroscopy (IFS), and adaptative optics assisted Gemini NIFS near-infrared K-band IFS to map the stellar and gas distribution, excitation and kinematics of the inner few kpc of the nearby edge-on S0 galaxy NGC 4111. The HST images map its ≈450 pc diameter dusty polar ring, with an estimated gas mass ≥107 M⊙. The NIFS data cube maps the inner 110 pc radius at ≈7 pc spatial resolution, revealing a ≈220 pc diameter polar ring in hot (2267 ± 166 K) molecular H2 1–0 S(1) gas embedded in the polar ring. The stellar velocity field shows disc-dominated kinematics along the galaxy plane both in the SAURON large scale and in the NIFS nuclear-scale data. The large-scale [O iii] λ5007 Å velocity field shows a superposition of two disc kinematics: one similar to that of the stars and another along the polar ring, showing non-circular motions that seem to connect with the velocity field of the nuclear H2 ring, whose kinematics indicate accelerated inflow to the nucleus. The estimated mass inflow rate is enough not only to feed an active galactic nucleus (AGN) but also to trigger circumnuclear star formation in the near future. We propose a scenario in which gas from the polar ring, which probably originated from the capture of a dwarf galaxy, is moving inwards and triggering an AGN, as supported by the local X-ray emission, which seems to be the source of the H2 1–0 S(1) excitation. The fact that we see neither near-UV nor Br γ emission suggests that the nascent AGN is still deeply buried under the optically thick dust of the polar ring.

Funder

National Science Foundation

National Research Council Canada

Ministerio de Ciencia e Innovación

Ministério da Ciência, Tecnologia, Inovações e Comunicações

Korea Astronomy and Space Science Institute

NASA

ESA

Space Telescope Science Institute

European Research Council

European Union

Horizon 2020

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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