Evidence of nuclear disks in starburst galaxies from their radial distribution of supernovae
arXiv:1203.2927 · doi:10.1051/0004-6361/201118545
Abstract
Galaxy-galaxy interactions are expected to be responsible for triggering massive star formation and possibly accretion onto a supermassive black hole, by providing large amounts of dense molecular gas down to the central kiloparsec region. Several scenarios to drive the gas further down to the central ~100 pc, have been proposed, including the formation of a nuclear disk around the black hole, where massive stars would produce supernovae. Here, we probe the radial distribution of supernovae and supernova remnants in the nuclear regions of the starburst galaxies M82, Arp 299-A, and Arp 220, by using high-angular resolution (< 0."1) radio observations published in the literature (for M82 and Arp 220), or obtained by ourselves from the European VLBI Network (Arp 299-A). Our main goal was to characterize the nuclear starbursts in those galaxies and thus test scenarios that propose that nuclear disks of sizes ~100 pc form in the central regions of starburst galaxies. We obtained the radial distribution of supernovae (SNe) in the nuclear starbursts of M82, Arp 299-A, and Arp 220, and derived scale-length values for the putative nuclear disks powering the bursts in those central regions. The scale lengths for the (exponential) disks range from ~20-30 pc for Arp 299-A and Arp 220, up to ~140 pc for M82. The radial distribution of SNe for the nuclear disks in Arp 299-A and Arp 220 is also consistent with a power-law surface density profile of exponent gamma=1, as expected from detailed hydrodynamical simulations of nuclear disks. Our results support scenarios where a nuclear disk of size ~100 pc is formed in (U)LIRGs, and sustained by gas pressure, in which case the accretion onto the black hole could be lowered by supernova feedback.
Accepted for publication in Astronomy and Astrophysics
References in corpus (6)
- Star formation efficiency in galaxy interactions and mergers: a statistical study
- VLBI Images of 49 Radio Supernovae in Arp 220
- Coevolution of Supermassive Black Holes and Circumnuclear Disks
- Deep MERLIN 5GHz Radio Imaging of Supernova Remnants in the M82 Starburst
- Discovery of a bright radio transient in M82: a new radio supernova?
- The nuclear starburst in Arp 299-A: From the 5.0 GHz VLBI radio light-curves to its core-collapse supernova rate
Cited by in corpus (18)
- Core-collapse supernovae missed by optical surveys
- High-Resolution Radio Continuum Measurements of the Nuclear Disks of Arp 220
- Supernovae and their host galaxies. I. The SDSS DR8 database and statistics
- Stellar and Gaseous Nuclear Disks Observed in Nearby (U)LIRGs
- Star formation and nuclear activity in luminous infrared galaxies: An infrared through radio review
- Supernovae and their host galaxies - III. The impact of bars and bulges on the radial distribution of supernovae in disc galaxies
- Star formation and AGN activity in a sample of local Luminous Infrared Galaxies through multi-wavelength characterization
- Supernovae and their host galaxies - II. The relative frequencies of supernovae types in spirals
- First results from GeMS/GSAOI for project SUNBIRD: Supernovae UNmasked By Infra-Red Detection
- The Close AGN Reference Survey (CARS): Comparative analysis of the structural properties of star-forming and non-star-forming galaxy bars
- Spatial distributions of core-collapse supernovae in infrared-bright galaxies
- Inflowing gas onto a compact obscured nucleus in Arp 299A: Herschel spectroscopic studies of H2O and OH
- Obscuring fraction of active galactic nuclei implied by supernova and radiative feedbacks
- Origin and evolution of dust-obscured galaxies in galaxy mergers
- SPIRITS 15c and SPIRITS 14buu: Two Obscured Supernovae in the Nearby Star-Forming Galaxy IC 2163
- Subarcsecond LOFAR imaging of Arp299 at 150 MHz. Tracing the nuclear and diffuse extended emission of a bright LIRG
- Gaia transient detection efficiency: hunting for nuclear transients
- No AGN evidence in NGC1614 from deep radio VLBI observations