Multi-fluid shocks in clusters of galaxies: entropy, sigma_ v-T, M-T and L_x-T scalings
arXiv:astro-ph/0501575 · doi:10.1016/j.asr.2005.01.052
Abstract
The nonthermal phenomena in clusters of galaxies are considered in the context of the hierarchical model of cosmic structure formation by accretion and merging of the dark matter (DM) substructures.Accretion and merging processes produce large-scale gas shocks. The plasma shocks are expected to be collisionless. In the course of cluster's aggregation, the shocks, being the main gas-heating agent, generate turbulent magnetic fields and accelerate energetic particles via collisionless multi-fluid plasma relaxation processes. The intracluster gas heating and entropy production rate by a collisionless shock may differ significantly from that in a single-fluid collisional shock. Simple scaling relations for postshock ion temperature and entropy as functions of shock velocity in strong collisionless multi-fluid shocks are presented. We show that the multi-fluid nature of the collisionless shocks results in high gas compression, reduced entropy production and modified sigma_v-T, M-T and L_x-T scalings. The scaling indexes estimated for a simple model of a strong accretion multi-fluid shock are generally consistent with observations. Soft X-ray and extreme ultraviolet photons dominate the emission of strong accretion shock precursors that appear as large-scale filaments. Magnetic fields, turbulence and energetic particles constitute the nonthermal components contributing into the pressure balance, energy transport and emission of clusters. Nonthermal emission of energetic particles could be a test to constrain the cluster properties.
19 pages, Invited talk at COSPAR Symposium "Clusters of Galaxies: New Insights from XMM-Newton, Chandra and INTEGRAL", Paris (France), 2004, accepted for publication in Advances in Space Research
References in corpus (9)
- Cosmological Shock Waves and Their Role in the Large Scale Structure of the Universe
- X-ray properties of galaxy clusters and groups from a cosmological hydrodynamical simulation
- Spatially resolved X-ray spectroscopy of cooling clusters of galaxies
- EGRET upper limits on the high-energy gamma-ray emission of galaxy clusters
- On the Origin of Intracluster Entropy
- Alfvenic reacceleration of relativistic particles in galaxy clusters: MHD waves, leptons and hadrons
- Temperature and entropy profiles of nearby cooling flow clusters observed with XMM-Newton
- XMM-Newton discovery of an X-ray filament in Coma
- The Physics of Supernova Remnant Blast Waves. II. Electron-Ion Equilibration in DEM L71 in the Large Magellanic Cloud
Cited by in corpus (5)
- Magnetic Fields, Relativistic Particles, and Shock Waves in Cluster Outskirts
- Cosmological shock waves
- Equilibration processes in the Warm-Hot Intergalactic Medium
- Effects of Neutral Hydrogen on Cosmic Ray Precursors in Supernova Remnant Shock Waves
- Collisionless shocks in partly ionized plasma with cosmic rays: microphysics of non-thermal components