On the supernovae heating of intergalactic medium
arXiv:astro-ph/0004333 · doi:10.1046/j.1365-8711.2000.03771.x
Abstract
We present estimates of the energy input from supernovae (SNe) into the intergalactic medium using (i) recent measurements of Si and Fe abundances in the intracluster medium (ICM) and (ii) self-consistent gasdynamical galaxy formation simulations that include processes of cooling, star formation, SNe feedback, and a multi-phase model of the interstellar medium. We estimate the energy input from observed abundances using two different assumptions: (i) spatial uniformity of metal abundances in the ICM and (ii) radial abundance gradients. We show that these two cases lead to energy input estimates which are different by an order of magnitude, highlighting a need for observational data on large-scale abundance gradients in clusters. Analysis of galaxy formation results and estimates from observed Fe and Si abundances indicates that the SNe energy input can be important for heating of the entire ICM (providing energy of ~1 keV per particle) only if the ICM abundances are uniform and the efficiency of gas heating by SN explosions is close to 100% (implying that all of the initial kinetic energy of the explosion goes into heating of the ICM). We conclude that unless these most favorable conditions are met, SNe alone are unlikely to provide sufficient energy input to heat all of the cluster ICM and may need to be supplemented or even substituted by some other heating process(es). (Abridged)
submitted to MNRAS, LaTeX, 15 pages, 5 figures, 2 tables
References in corpus (1)
Cited by in corpus (53)
- A Physical Model for the Co-evolution of QSOs and of their Spheroidal Hosts
- Formation of Galaxy Clusters
- Tracing cosmic evolution with clusters of galaxies
- The Evolution of X-ray Clusters of Galaxies
- X-ray properties of galaxy clusters and groups from a cosmological hydrodynamical simulation
- On the prevalence of radio-loud AGN in brightest cluster galaxies: implications for AGN heating of cooling flows
- Quasar Feedback: the Missing Link in Structure Formation
- The case for AGN feedback in galaxy groups
- Modified-Entropy Models for the Intracluster Medium
- Regulation of the X-ray luminosity of clusters of galaxies by cooling and supernova feedback
- Explaining the entropy excess in clusters and groups of galaxies without additional heating
- On the role of AGN feedback on the thermal and chemodynamical properties of the hot intra-cluster medium
- The effect of non--gravitational gas heating in groups and clusters of galaxies
- Cooling and heating the ICM in hydrodynamical simulations
- Inter-galactic Shock Acceleration and the Cosmic Gamma-ray Background
- Feedback from Active Galactic Nuclei in Galaxy Groups
- Cosmic Rays Above the Second Knee from Clusters of Galaxies and Associated High-Energy Neutrino Emission
- AGN Feedback Causes Downsizing
- The Impact of Galaxy Formation on the X-ray Evolution of Clusters
- X-Ray Scaling Relations of Galaxy Groups in a Hydrodynamic Cosmological Simulation
- The Complete Local Volume Groups Sample - I. Sample Selection and X-ray Properties of the High-Richness Subsample
- XMM-Newton observations of three poor clusters: Similarity in dark matter and entropy profiles down to low mass
- Iron abundances and heating of the ICM in hydrodynamical simulations of galaxy clusters
- Heating of the intracluster medium by quasar outflows
- SNe heating and the chemical evolution of the intra-cluster medium
- Evidence for radio-source heating of groups
- Chemical evolution in a model for the joint formation of quasars and spheroids
- Quasars: What turns them off?
- Thermal Balance in the Intracluster Medium: Is AGN Feedback Necessary?
- Galaxy Formation in Preheated Intergalactic Media
- Entropy Evolution in Galaxy Groups and Clusters; A Comparison of External and Internal Heating
- Simulating galaxy clusters -- I. Thermal and chemical properties of the intra-cluster medium
- Observational evidence for gravitationally trapped massive axion(-like) particles
- The impact of galaxy formation on X-ray groups
- Theoretical Light Curves of Type II-P SNe and Applications to Cosmology
- The entropy distribution in clusters: evidence of feedback?
- Measuring AGN Feedback with the Sunyaev-Zel'dovich Effect
- Sunyaev-Zeldovich Effect from Quasar-driven Blast-waves
- Heating of Intracluster Gas by Jet Activities of AGN: Is the "Preheating" Scenario Realistic?
- Evolution of X-ray cluster scaling relations in simulations with radiative cooling and non-gravitational heating
- Heating of the Hot Intergalactic Medium by Powerful Radio Galaxies and Associated High Energy Gamma-Ray Emission
- The SRG/eROSITA All-Sky Survey: Constraints on AGN Feedback in Galaxy Groups
- Predictions of Quasar Clustering: Redshift, Luminosity and Selection Dependence
- The detection and X-ray evolution of galaxy groups at high redshift
- Implications of the Universal Temperature Profile for Galaxy Clusters
- Constraints on circum-galactic media from Sunyaev-Zel'dovich effects and X-ray data
- Cosmological Implications and Physical Properties of an X-Ray Flux-Limited Sample of Galaxy Clusters
- Heating of X-Ray Hot Gas in Groups by Blast Waves
- Central gas entropy excess as a direct evidence for AGN feedback in galaxy groups and clusters
- Monte-Carlo Modeling of Non-Gravitational Heating Processes in Galaxy Clusters
- Multi-scale simulations of black hole accretion in barred galaxies: Self-gravitating disk models
- Feedback Factory: Multiple faint radio-jets detected in a cluster at z=2
- Supernovae and photoionizing feedback in spiral arm molecular clouds