The Accretion of Gas onto Galaxies as Traced by their Satellites
arXiv:1005.1825 · doi:10.1111/j.1365-2966.2010.17337.x
Abstract
We have compiled a large sample of isolated central galaxies from the Sloan Digital Sky Survey, which do not have a neighbour of comparable brightness within a projected distance of 1 Mpc. We use the colours, luminosities and surface brightnesses of satellite galaxies in the vicinity of these objects to estimate their atomic gas content and to derive the average total mass of HI gas contained in satellites as a function of projected radius from the primary. Recent calibrations of merging timescales from N-body simulations are used to estimate the rate at which this gas will accrete onto the primaries. Our estimated accretion rates fall short of those needed to maintain the observed level of star formation in these systems by nearly two orders of magnitude. Nevertheless, there are strong correlations between the total mass of gas in satellites and the colours and specific star formation rates of central galaxies of all stellar masses. The correlations are much weaker if we consider the total stellar mass in the satellites, rather than their total gas mass. We ask why star formation in the central galaxies should be correlated with gas contained in satellites at projected separations of a Mpc or more, well outside the virial radius of the dark matter halos of these systems. We suggest that gas-rich satellites trace an underlying reservoir of ionized gas that is accreted continuously, and that provides the fuel for ongoing star formation in galaxies in the local Universe.
14 pages, 6 figures, submitted to MNRAS
References in corpus (13)
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- How do galaxies populate Dark Matter halos?
- Cold gas accretion in galaxies
- Environmental Effects on Satellite Galaxies: The Link Between Concentration, Size and Colour Profile
- The Galaxy and its stellar halo: insights on their formation from a hybrid cosmological approach
- A calibration of the relation between the abundance of close galaxy pairs and the rate of galaxy mergers
- Image Decomposition of Barred Galaxies and AGN Hosts
- Interaction-induced star formation in a complete sample of 10^5 nearby star-forming galaxies
- Modelling galaxy clustering in a high resolution simulation of structure formation
- MegaZ-LRG: A photometric redshift catalogue of one million SDSS Luminous Red Galaxies
- Ongoing Galactic Accretion: Simulations and Observations of Condensed Gas in Hot Halos
- Linked evolution of gas and star formation in galaxies over cosmic history
- Galactic Satellite Systems: Radial Distribution and Environment Dependence of Galaxy Morphology
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