The Swift BAT Perspective on Non-thermal Emission in HIFLUGCS Galaxy Clusters
arXiv:1207.0506 · doi:10.1088/0004-637X/748/1/67
Abstract
The search for diffuse non-thermal, inverse Compton (IC) emission from galaxy clusters at hard X-ray energies has been underway for many years, with most detections being either of low significance or controversial. In this work, we investigate 14-195 keV spectra from the Swift Burst Alert Telescope (BAT) all-sky survey for evidence of non-thermal excess emission above the exponentially decreasing tail of thermal emission in the flux-limited HIFLUGCS sample. To account for the thermal contribution at BAT energies, XMM-Newton EPIC spectra are extracted from coincident spatial regions so that both thermal and non-thermal spectral components can be determined simultaneously. We find marginally significant IC components in six clusters, though after closer inspection and consideration of systematic errors we are unable to claim a clear detection in any of them. The spectra of all clusters are also summed to enhance a cumulative non-thermal signal not quite detectable in individual clusters. After constructing a model based on single-temperature fits to the XMM-Newton data alone, we see no significant excess emission above that predicted by the thermal model determined at soft energies. This result also holds for the summed spectra of various subgroups, except for the subsample of clusters with diffuse radio emission. For clusters hosting a diffuse radio halo, a relic, or a mini-halo, non-thermal emission is initially detected at the \sim5-sigma confidence level - driven by clusters with mini-halos - but modeling and systematic uncertainties ultimately degrade this significance. In individual clusters, the non-thermal pressure of relativistic electrons is limited to \sim10% of the thermal electron pressure, with stricter limits for the more massive clusters, indicating that these electrons are likely not dynamically important in the central regions of clusters.
25 pages, 15 figures; some figure and table numbering differs from published ApJ version: please see that for superior formatting
References in corpus (16)
- Intracluster Medium Entropy Profiles for a Chandra Archival Sample of Galaxy Clusters
- A Catalog of Galaxy Clusters Observed by XMM-Newton
- Observations of extended radio emission in clusters
- When A Standard Candle Flickers
- Magnetic Fields in the Center of the Perseus Cluster
- Galaxy Clusters in the Swift/BAT era: Hard X-rays in the ICM
- X-ray Substructure Studies of Four Galaxy Clusters using XMM-Newton Data
- Deep Westerbork observations of Abell 2256 at 350 MHz
- Giant cavities, cooling and metallicity substructure in Abell 2204
- Bandpass Dependence of X-ray Temperatures in Galaxy Clusters
- INTEGRAL discovery of non-thermal hard X-ray emission from the Ophiuchus cluster
- The Solar Wind Charge-eXchange contribution to the Local Soft X-ray Background. Model to data comparison in the 0.1-1.0 keV band
- Warm-Hot Intergalactic Medium Associated with the Coma Cluster
- Long RXTE Observations of A2163
- South-West extension of the hard X-ray emission from the Coma cluster
- Soft and hard X-ray excess emission in Abell 3112 observed with Chandra
Cited by in corpus (6)
- Diffuse Radio Emission from Galaxy Clusters
- NuSTAR Observations of the Bullet Cluster: Constraints on Inverse Compton Emission
- A NuSTAR observation of the fast symbiotic nova V745 Sco in outburst
- Constraining the average magnetic field in galaxy clusters with current and upcoming CMB surveys
- The Merger Dynamics of the X-ray Emitting Plasma in Clusters of Galaxies
- Possible non-thermal origin of the hard X-ray emission in the merging galaxy cluster SPT-CL J2031-4037