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Non-equilibrium ionization states in galaxy clusters

2009/11/01 by D. A. Prokhorov, Dmitry Prokhorov · 1 citation
Physics and Astronomy · #Astrophysical Phenomena and Observations #Astrophysics #Astrophysics and Cosmic Phenomena #Atomic physics #Cluster (spacecraft) #Context (archaeology) #Galaxies: Formation, Evolution, Phenomena #Galaxy #Galaxy cluster #Ion #Ionization #Physics #Thermodynamic equilibrium #Thermodynamics #astro-ph.HE

paper · pdf · doi:10.1051/0004-6361/200913195

6 pages, 6 figures, accepted for publication in Astronomy and Astrophysics

arxiv created 2009/11/01 · openalex publication_date 2009/11/12 · arxiv updated 2015/05/14 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/05

Abstract

<i>Context. <i/>X-ray imaging observatories have revealed hydrodynamic structures with linear scales of ~10 kpc in clusters of galaxies, such as shock waves in the 1E0657-56 and A520 galaxy clusters and the hot plasma bubble in the MKW 3s cluster. The future X-ray observatory IXO will for the first time resolve the metal distribution in galaxy clusters at the these scales.<i>Aims. <i/>Heating of plasmas by shocks and AGN activities can result in non-equilibrium ionization states of metal ions. We study the effect of the non-equilibrium ionization at linear scales of <i>≲<i/>50 kpc in galaxy clusters. <i>Methods. <i/>A condition for non-equilibrium ionization is derived by comparing the ionization time-scale with the age of hydrodynamic structures. Modeling of non-equilibrium ionization is performed at a point in time when the plasma temperature suddenly changes. An analysis of the relaxation processes of the FeXXV and FeXXVI ions by means of eigenvectors of the transition matrix is given.<i>Results. <i/>We conclude that the non-equilibrium ionization of iron can occur in galaxy clusters if the baryonic overdensity <i>δ<i/> is smaller than , where is the ratio of the hydrodynamic structure age to the Hubble time. Our modeling indicates that the emissivity in the helium-like emission lines of iron increases as a result of the deviation from the ionization equilibrium. A slow process of helium-like ionic fraction relaxation was analyzed. A new way to determine a shock velocity is proposed.

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