Infrared Emission from the Nearby Cool Core Cluster Abell 2597
arXiv:0708.1427 · doi:10.1086/522575
Abstract
We observed the brightest central galaxy (BCG) in the nearby (z=0.0821) cool core galaxy cluster Abell 2597 with the IRAC and MIPS instruments on board the Spitzer Space Telescope. The BCG was clearly detected in all Spitzer bandpasses, including the 70 and 160 micron wavebands. We report aperture photometry of the BCG. The spectral energy distribution exhibits a clear excess in the FIR over a Rayleigh-Jeans stellar tail, indicating a star formation rate of ~4-5 solar masses per year, consistent with the estimates from the UV and its H-alpha luminosity. This large FIR luminosity is consistent with that of a starburst or a Luminous Infrared Galaxy (LIRG), but together with a very massive and old population of stars that dominate the energy output of the galaxy. If the dust is at one temperature, the ratio of 70 to 160 micron fluxes indicate that the dust emitting mid-IR in this source is somewhat hotter than the dust emitting mid-IR in two BCGs at higher-redshift (z~0.2-0.3) and higher FIR luminosities observed earlier by Spitzer, in clusters Abell 1835 and Zwicky 3146.
Accepted at ApJ
References in corpus (5)
- AGN-controlled cooling in elliptical galaxies
- Cold molecular gas in the Perseus cluster core - Association with X-ray cavity, Halpha filaments and cooling flow -
- Dust in starburst nuclei and ULIRGs: SED models for observers
- OVI Observations of Galaxy Clusters: Evidence for Modest Cooling Flows
- A Large Mass of H2 in the Brightest Cluster Galaxy in Zwicky 3146
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- Optical IFU Observations of the Brightest Cluster Galaxy NGC 4696: The Case for a Minor Merger and Shock-excited Filaments
- Residual Cooling and Persistent Star Formation amid AGN Feedback in Abell 2597
- Early-Type Galaxy Star Formation Histories in Different Environments
- Multiwavelength radio observations of a Brightest Cluster Galaxy at z=1.71: Detection of a modest Active Galactic Nucleus and evidence for extended star formation