Chemical Enrichment RGS cluster sample (CHEERS): Constraints on turbulence
arXiv:1501.01069 · doi:10.1051/0004-6361/201425278
Abstract
Feedback from AGN, galactic mergers, and sloshing are thought to give rise to turbulence, which may prevent cooling in clusters. We aim to measure the turbulence in clusters of galaxies and compare the measurements to some of their structural and evolutionary properties. It is possible to measure the turbulence of the hot gas in clusters by estimating the velocity widths of their X-ray emission lines. The RGS Spectrometers aboard XMM-Newton are currently the only instruments provided with sufficient effective area and spectral resolution in this energy domain. We benefited from excellent 1.6Ms new data provided by the CHEERS project. The new observations improve the quality of the archival data and allow us to place constraints for some clusters, which were not accessible in previous work. One-half of the sample shows upper limits on turbulence less than 500km/s. For several sources, our data are consistent with relatively strong turbulence with upper limits on the velocity widths that are larger than 1000km/s. The NGC507 group of galaxies shows transonic velocities, which are most likely associated with the merging phenomena and bulk motions occurring in this object. Where both low- and high-ionization emission lines have good enough statistics, we find larger upper limits for the hot gas, which is partly due to the different spatial extents of the hot and cool gas phases. Our upper limits are larger than the Mach numbers required to balance cooling, suggesting that dissipation of turbulence may prevent cooling, although other heating processes could be dominant. The systematics associated with the spatial profile of the source continuum make this technique very challenging, though still powerful, for current instruments. The ASTRO-H and Athena missions will revolutionize the velocity estimates and discriminate between different spatial regions and temperature phases.
16 pages, 18 figures, 3 tables, accepted for publications in Astronomy and Astrophysics
References in corpus (10)
- Heating Hot Atmospheres with Active Galactic Nuclei
- Intracluster Medium Entropy Profiles for a Chandra Archival Sample of Galaxy Clusters
- A Catalog of Galaxy Clusters Observed by XMM-Newton
- Turbulent Heating in Galaxy Clusters Brightest in X-rays
- The origin of cold fronts in the cores of relaxed galaxy clusters
- Statistics of X-ray observables for the cooling-core and non-cooling core galaxy clusters
- Turbulence and cooling in galaxy cluster cores
- A volume-limited sample of X-ray galaxy groups and clusters - II. X-ray cavity dynamics
- Abundance and temperature distributions in the hot intra-cluster gas of Abell 4059
- Characterization of ICM Temperature Distributions of 62 Galaxy Clusters with XMM-Newton
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- Hot Atmospheres, Cold Gas, AGN Feedback and the Evolution of Early Type Galaxies: a Topical Perspective
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- Measuring bulk flows of the intracluster medium in the Perseus and Coma galaxy clusters using XMM-Newton
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- The clus model in SPEX: projection and resonant scattering effects on the iron abundance and temperature profiles of galaxy clusters
- CHEERS: Future perspectives for abundance measurements in clusters with XMM-Newton
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- Implications of the mild gas motion found with Hitomi in the core of the Perseus cluster
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