On the nature of the unusual transient AT 2018cow from HI observations of its host galaxy
arXiv:1902.10144 · doi:10.1051/0004-6361/201935372
Abstract
Unusual stellar explosions represent an opportunity to learn about both stellar and galaxy evolution. Mapping the atomic gas in host galaxies of such transients can lead to an understanding of the conditions triggering them. We provide resolved atomic gas observations of the host galaxy, CGCG137-068, of the unusual, poorly-understood transient AT2018cow searching for clues to understand its nature. We test whether it is consistent with a recent inflow of atomic gas from the intergalactic medium, as suggested for host galaxies of gamma-ray bursts (GRBs) and some supernovae (SNe). We observed the HI hyperfine structure line of the AT2018cow host with the Giant Metrewave Radio Telescope. There is no unusual atomic gas concentration near the position of AT2018cow. The gas distribution is much more regular than those of GRB/SN hosts. The AT2018cow host has an atomic gas mass lower by 0.24 dex than predicted from its star formation rate (SFR) and is at the lower edge of the galaxy main sequence. In the continuum we detected the emission of AT2018cow and of a star-forming region in the north-eastern part of the bar (away from AT2018cow). This region hosts a third of the galaxy's SFR. The absence of atomic gas concentration close to AT2018cow, along with a normal SFR and regular HI velocity field, sets CGCG137-068 apart from GRB/SN hosts studied in HI. The environment of AT2018cow therefore suggests that its progenitor may not have been a massive star. Our findings are consistent with an origin of the transient that does not require a connection between its progenitor and gas concentration or inflow: an exploding low-mass star, a tidal disruption event, a merger of white dwarfs, or a merger between a neutron star and a giant star. We interpret the recently reported atomic gas ring in CGCG137-068 as a result of internal processes connected with gravitational resonances caused by the bar.
Accepted to A&A. 9 pages, 4 figures, 2 tables. Main changes: 1) inclusion of the HI data from August 2018; 2) the atomic gas ring discovered by Roychowdhury et al. (2019) is visible, but we present a different interpretation of its origin (internal mechanisms); 3) the faint low-S/N companions were spurious
References in corpus (16)
- A Highly Consistent Framework for the Evolution of the Star-Forming "Main Sequence" from z~0-6
- WSClean: an implementation of a fast, generic wide-field imager for radio astronomy
- HyperLEDA. III. The catalogue of extragalactic distances
- Cold gas accretion in galaxies
- The SCUBA HAlf Degree Extragalactic Survey (SHADES) - III. Identification of radio and mid-infrared counterparts to submillimetre galaxies
- SoFiA: a flexible source finder for 3D spectral line data
- Star formation sustained by gas accretion
- Gas stripping in galaxy groups - the case of the starburst spiral NGC 2276
- Star formation efficiency in the Barred Spiral Galaxy NGC 4303
- Two gamma-ray bursts from dusty regions with little molecular gas
- GRB 980425 host: [CII], [OI] and CO lines reveal recent enhancement of star formation due to atomic gas inflow
- Wide-field 12CO (J = 1-0) Imaging of the Nearby Barred Galaxy M83 with NMA and Nobeyema 45-m telescope: Molecular Gas Kinematics and Star Formation Along the Bar
- A Detection of Molecular Gas Emission in the Host Galaxy of GRB 080517
- HI 21cm mapping of the host galaxy of AT2018cow: a fast-evolving luminous transient within a ring of high column density gas
- Inner and outer rings are not strongly coupled with stellar bars
- Observational Evidence For Constant Gas Accretion Rate Since z = 5
Cited by in corpus (10)
- AGN feeding and feedback in Fornax A: kinematical analysis of the multi-phase ISM
- A Blast from the Pasture: Studying the environment of AT 2018cow with MUSE
- AT 2018cow VLBI: No Long-Lived Relativistic Outflow
- Late-time Hubble Space Telescope Observations of AT 2018cow. I. Further Constraints on the Fading Prompt Emission and Thermal Properties 50--60 Days Post-discovery
- Connection of supernovae 2002ap, 2003gd, 2013ej, and 2019krl in M74 with atomic gas accretion and spiral structure
- NGC 2770: high supernova rate due to interaction
- The interstellar medium in the environment of the supernova-less long-duration GRB 111005A
- MUPHOTEN : a MUlti-band PHOtometry Tool for TElescope Network
- Luminous Fast Blue Optical Transients and Type Ibn/Icn SNe from Wolf-Rayet/Black Hole Mergers
- Asymmetric HI 21 cm lines of fast radio burst hosts: connection with galaxy interaction