Cluster Merger Shock Constraints on Particle Acceleration and Nonthermal Pressure in the Intracluster Medium
arXiv:0706.2881 · doi:10.1086/526409
Abstract
X-ray observations of galaxy cluster merger shocks can be used to constrain nonthermal processes in the intracluster medium (ICM). The presence of nonthermal pressure components in the ICM, as well as the shock acceleration of particles and their escape, all affect shock jump conditions in distinct ways. Therefore, these processes can be constrained using X-ray surface brightness and temperature maps of merger shock fronts. Here we use these observations to place constraints on particle acceleration efficiency in intermediate Mach number (M ~ 2-3) shocks and explore the potential to constrain the contribution of nonthermal components (e.g., cosmic rays, magnetic field, and turbulence) to ICM pressure in cluster outskirts. We model the hydrodynamic jump conditions in merger shocks discovered in the galaxy clusters A520 (M ~ 2) and 1E 0657-56 (M ~ 3) using a multifluid model comprised of a thermal plasma, a nonthermal plasma, and a magnetic field. Based on the published X-ray spectroscopic data alone, we find that the fractional contribution of cosmic rays accelerated in these shocks is lower than about 10% of the shock downstream pressure. Current observations do not constrain the fractional contribution of nonthermal components to the pressure of the undisturbed shock upstream. Future X-ray observations, however, have the potential to either detect particle acceleration in these shocks through its effect on the shock dynamics, or to place a lower limit on the nonthermal pressure contributions in the undisturbed ICM. We briefly discuss implications for models of particle acceleration in collisionless shocks and the estimates of galaxy cluster masses derived from X-ray and Sunyaev-Zel'dovich effect observations.
10 pages, 4 figures, comments welcome
References in corpus (16)
- Shocks and cold fronts in galaxy clusters
- Effects of Galaxy Formation on Thermodynamics of the Intracluster Medium
- Testing X-ray Measurements of Galaxy Clusters with Cosmological Simulations
- Primary particle acceleration above 100 TeV in the shell-type Supernova Remnant RX J1713.7-3946 with deep H.E.S.S. observations
- Systematics in the X-ray Cluster Mass Estimators
- The speed of the `bullet' in the merging galaxy cluster 1E0657-56
- The intracluster magnetic field power spectrum in Abell 2255
- Cosmological Shock Waves in the Large Scale Structure of the Universe: Non-gravitational Effects
- Gamma rays from clusters of galaxies
- Cluster magnetic fields from large-scale-structure and galaxy-cluster shocks
- How Rare is the Bullet Cluster?
- A New Force in the Dark Sector?
- Turbulent Velocity Fields in SPH--simulated Galaxy Clusters
- The Cluster-Merger Shock in 1E 0657-56: Faster than the Speeding Bullet?
- Self-Similar Evolution of Cosmic-Ray-Modified Quasi-Parallel Plane Shocks
- Analysis and Interpretation of Hard X-ray Emission from the Bullet Cluster (1E0657-56), the Most Distant Cluster of Galaxies Observed by RXTE
Cited by in corpus (5)
- Radioactive heating rate of r-process elements and macronova light curve
- Thermal Balance in the Intracluster Medium: Is AGN Feedback Necessary?
- Relativistic Electron Shock Drift Acceleration in Low Mach Number Galaxy Cluster Shocks
- Neutrinos and Gamma Rays from Galaxy Clusters
- Dark matter annihilation and non-thermal Sunyaev-Zel'dovich effect: II. dwarf spheroidal galaxy