Far-Infrared Emission from Intracluster Dust in Abell Clusters
arXiv:astro-ph/0112063 · doi:10.1051/0004-6361:20011613
Abstract
The ISOPHOT instrument aboard ISO has been used to observe extended FIR emission of six Abell clusters. The raw profiles of the I_(120 um) / I_(180 um) surface brightness ratio including zodiacal light show a bump towards Abell 1656 (Coma), dips towards Abell 262 and Abell 2670, and are without clear structure towards Abell 400, Abell 496, and Abell 4038. After subtraction of the zodiacal light, the bump towards Abell 1656 is still present, while the dips towards Abell 262 and Abell 2670 are no longer noticable. This indicates a localized excess of emitting material outside the Galaxy towards Abell 1656, while the behavior in Abell 262 and Abell 2670 can be reconciled with galactic cirrus structures localized on the line-of-sight to these clusters. The excess towards Abell 1656 (Coma) is interpreted as thermal emission from intracluster dust distributed in the hot X-ray emitting intracluster medium. The absence of any signature for intracluster dust in five clusters and the rather low inferred dust mass in Abell 1656 indicates that intracluster dust is likely not responsible for the excess X-ray absorption seen in cooling flow clusters. These observations thereby represent a further unsuccessful attempt in detecting the presumed final stage of the cooling flow material, in accord with quite a number of previous studies in other wavelengths regions. Finally, the observed dimming of the high-redshift supernovae is unlikely be attributable to extinction caused by dust in the intracluster or even a presumed intercluster medium.
16 pages, 32 figures, accepted for publication in Astronomy & Astrophysics
References in corpus (2)
Cited by in corpus (28)
- Galactic Winds
- Galaxy Star-Formation as a Function of Environment in the Early Data Release of the Sloan Digital Sky Survey
- Lyman alpha Radiative Transfer with Dust: Escape Fractions from Simulated High-Redshift Galaxies
- Exploring Cluster Physics with High-Resolution Sunyaev-Zel'dovich Effect Images and X-Ray Data: The Case of the Most X-Ray-Luminous Galaxy Cluster RX J1347-1145
- Illuminating a Dark Lens : A Type Ia Supernova Magnified by the Frontier Fields Galaxy Cluster Abell 2744
- The Dust Content of Galaxy Clusters
- On the dust content of galaxy clusters
- Searching for dust in the intracluster medium from reddening of background galaxies
- First detection of the Sunyaev Zel'dovich effect increment at lambda < 650 um
- Dust emission and star formation in Stephan's Quintet
- The Infrared Luminosity of Galaxy Clusters
- The Herschel Virgo Cluster Survey. XX. Dust and gas in the foreground Galactic cirrus
- A study of the Sunyaev-Zel'dovich increment using archival SCUBA data
- Infrared Emission from Intracluster Dust Grains and Constraints on Dust Properties
- Search for IR Emission from Intracluster Dust in A2029
- Planck intermediate results. XLIII. The spectral energy distribution of dust in clusters of galaxies
- ISO's Contribution to the Study of Clusters of Galaxies
- Constraints on the Intracluster Dust Emission in the Coma Cluster of Galaxies
- The Transparency of Galaxy Clusters
- Infrared properties of the SDSS-maxBCG galaxy clusters
- Dust in clusters: separating the contribution of galaxies and intracluster media
- RELICS: ICL Analysis of the merging cluster WHL J013719.8-08284
- Submillimetre observations of galaxy clusters with BLAST: the star-formation activity in Abell 3112
- Dust accretion and destruction in galaxy groups and clusters
- The impact of dust on the scaling properties of galaxy clusters
- Dust in Clusters of Galaxies
- On the Origin of Dust in Galaxy Clusters at Low to Intermediate Redshift
- Cold Gas in Cluster Cores