Exploring extreme conditions for star formation: a deep search for molecular gas in the Leo ring
arXiv:2212.07803 · doi:10.1051/0004-6361/202244941
Abstract
We carry out sensitive searches for the CO J=1-0 and J=2-1 lines in the giant extragalactic HI ring in Leo to investigate the star formation process within environments where gas metallicities are close to solar but physical conditions are different than those typical of bright galaxy disks. Our aim is to check the range of validity of known scaling relations. We use the IRAM-30m telescope to observe eleven regions close to HI gas peaks or where sparse young massive stars have been found. For all pointed observations we reached a spectral noise between 1 and 5~mK for at least one observed frequencies at 2~km/s spectral resolution. We marginally detect two CO J=1-0 lines in the star forming region Clump~1 of the Leo ring, whose radial velocities are consistent with those of Halpha lines but line widths are much smaller than observed for virialized molecular clouds of similar mass in galaxies. The low signal-to-noise ratio, the small line widths and the extremely low number densities suggest that a more standard population of molecular clouds, still undetected, might be in place. Using upper limits to the CO lines, the most sensitive pointed observations show that the molecular gas mass surface density is lower than expected from the extrapolation of the molecular Kennicutt-Schmidt relation established in the disk of galaxies. The sparse stellar population in the ring, possibly forming ultra diffuse dwarf galaxies, might then be the result of a short molecular gas depletion time in this extreme environment.}
11 pages, 7 figures, accepted for publication in A&A
References in corpus (20)
- COLD GASS, an IRAM Legacy Survey of Molecular Gas in Massive Galaxies: II. The non-universality of the Molecular Gas Depletion Timescale
- A Search for Extended Ultraviolet Disk (XUV-disk) Galaxies in the Local Universe
- The lifecycle of molecular clouds in nearby star-forming disc galaxies
- Revisiting the Integrated Star Formation Law. Paper I: Non-Starbursting Galaxies
- SLUG - Stochastically Lighting Up Galaxies. II: Quantifying the Effects of Stochasticity on Star Formation Rate Indicators
- A Star Formation Law for Dwarf Irregular Galaxies
- A collisional origin for the Leo ring
- Dependence of on metallicity, intensity, and spatial scale in a self-regulated interstellar medium
- The volumetric star formation law for nearby galaxies -- Extension to dwarf galaxies and low-density regions
- PHANGS: Constraining Star Formation Timescales Using the Spatial Correlations of Star Clusters and Giant Molecular Clouds
- The role of molecular gas in galaxy transition in compact groups
- ALMA Resolves Giant Molecular Clouds in a Tidal Dwarf Galaxy
- A Nascent Tidal Dwarf Galaxy Forming within the Northern HI Streamer of M82
- Heavy elements unveil the non primordial origin of the giant HI ring in Leo
- First Detection of the Molecular Cloud Population in the Extended Ultraviolet (XUV) Disk of M83
- The Initial Mass Function in the Extended Ultraviolet Disk of M83
- Rise and fall of molecular clouds across the M33 disk
- xCOLDGASS and xGASS: Radial metallicity gradients and global properties on the star-forming main sequence
- The Environments of CO Cores and Star Formation in the Dwarf Irregular Galaxy WLM
- Gaseous nebulae and massive stars in the giant HI ring in Leo