The Origin of Radio Haloes and Non-thermal Emission in Clusters of Galaxies
arXiv:astro-ph/0208509 · doi:10.1046/j.1365-8711.2002.05937.x
Abstract
We study the origin of the non-thermal emission from the intracluster medium, including the excess hard X-ray emission and cluster-wide radio haloes, through fitting two representative models to the Coma cluster. If the synchrotron emitting relativistic electrons are accelerated in situ from the vast pool of thermal electrons, then a quasi-stationary solution of the kinetic equation with particle acceleration through turbulence at high energies (>200 keV) naturally produces a population of supra-thermal electrons responsible for the excess hard X-ray emission through bremsstrahlung. Inverse Compton scattering is negligible at hard X-ray energies in this case. The radio halo flux density constrains the magnetic field strength to a value close to that of equipartition ~1 uG. Alternatively, if the relativistic electrons are injected from numerous localised `external' sources then the hard X-rays are best explained by inverse Compton scattering from GeV electrons, and little of the hard X-radiation has a bremsstrahlung origin. In this case, the magnetic field strength is constrained to ~0.1-0.2 uG. Both models assume that the non-thermal emissions are generated by a single electron spectrum, so that only two free parameters, well constrained by the observed hard X-ray and radio halo spectra, are needed in either case. Measurements of the cluster magnetic field will distinguish between the models.
14 pages, 7 figures, accepted by MNRAS
Cited by in corpus (16)
- Nonthermal Particles and Radiation Produced by Cluster Merger Shocks
- Gamma Rays from Clusters and Groups of Galaxies: Cosmic Rays versus Dark Matter
- Annihilation Emission from the Galactic Black Hole
- Estimating galaxy cluster magnetic fields by the classical and hadronic minimum energy criterion
- Low Frequency Radio Constraints on the Synchrotron Cosmic Web
- Chandra measurements of non-thermal-like X-ray emission from massive, merging, radio-halo clusters
- On the non-thermal high energy radiation of galaxy clusters
- Angular correlations in the cosmic gamma-ray background from dark matter annihilation around intermediate-mass black holes
- Dark Matter Annihilation around Intermediate Mass Black Holes: an update
- In-situ acceleration of subrelativistic electrons in the Coma halo and the halo's influence on the Sunyaev-Zeldovich effect
- The Evolution of Diffuse Radio Sources in Galaxy Clusters
- The Broadband Spectrum of Galaxy Clusters
- Studying the leptonic structure of galaxy cluster atmospheres from the spectral properties of the SZ effect
- Stochastic particle acceleration and the problem of backgroud plasma overheating
- Can electron distribution functions be derived through the Sunyaev-Zel'dovich effect?
- On the influence of high energy electron populations on metal abundance estimates in galaxy groups and clusters