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Related papers: X-ray Cavities and Cooling Flows

200 papers

We study steady, homogeneous and subsonic cooling flows in poor clusters of galaxies in light of the recent proposal that radiative cooling of the intracluster gas can explain the observations of the `entropy floor' and other related X-ray…

Astrophysics · Physics 2009-11-07 Biman B. Nath

The radio continuum properties of galaxy clusters with cooling flows are reviewed along with the relationship to the X-ray environment. We find that 60-70% of cD galaxies in cooling flows are radio-loud, a much higher fraction than the 14%…

Strong evidence for cooling flows has been found in low resolution X-ray imaging and spectra of many clusters of galaxies. However high resolution X-ray spectra of several clusters from the Reflection Grating Spectrometer (RGS) on…

Astrophysics · Physics 2009-10-31 A. C. Fabian , R. F. Mushotzky , P. E. J. Nulsen , J. R. Peterson

We present the results of our study of a volume-limited sample (z <= 0.071) of 101 X-ray galaxy groups and clusters, in which we explore the X-ray cavity energetics. Out of the 101 sources in our parent sample, X-ray cavities are found in…

Cosmology and Nongalactic Astrophysics · Physics 2015-06-22 E. K. Panagoulia , A. C. Fabian , J. S. Sanders , J. Hlavacek-Larrondo

It is generally argued that most clusters of galaxies host cooling flows in which radiative cooling in the centre causes a slow inflow. However, recent observations by Chandra and XMM conflict with the predicted cooling flow rates. Here we…

Astrophysics · Physics 2009-11-07 M. Bruggen

A new model for cooling flows in X-ray clusters, capable of naturally explaining salient features observed, is proposed. The only requirement is that a significant relativistic component, in the form of cosmic rays (CR), be present in the…

Astrophysics · Physics 2009-11-10 Renyue Cen

The cooling cores of clusters of galaxies are among the brightest thermal X-ray line sources in the universe. High resolution X-ray spectra would allow individual line fluxes to be measured. The fluxes of low ionization X-ray lines in…

Astrophysics · Physics 2007-05-23 Craig L. Sarazin

The gas temperature in the cores of many clusters of galaxies drops inward by about a factor of three or more within the central 100 kpc radius. The radiative cooling time drops over the same region from 5 or more Gyr down to below a few…

Astrophysics · Physics 2007-05-23 A. C. Fabian

The hot, X-ray-emitting intracluster medium (ICM) is the dominant baryonic constituent of clusters of galaxies. In the cores of many clusters, radiative energy losses from the ICM occur on timescales significantly shorter than the age of…

Cosmic rays produced or deposited at sites in hot cluster gas are thought to provide the pressure that forms X-ray cavities. While cavities have a net cooling effect on cluster gas, young, expanding cavities drive shocks that increase the…

Cosmology and Nongalactic Astrophysics · Physics 2015-05-14 William G. Mathews

In the centers of many galaxy clusters, the hot ($\sim$10$^7$ K) intracluster medium (ICM) can become dense enough that it should cool on short timescales. However, the low measured star formation rates in massive central galaxies and…

It is generally argued that most clusters of galaxies host cooling flows in which radiative cooling in the centre causes a slow inflow. However, recent observations by Chandra and XMM conflict with the predicted cooling flow rates. It has…

Astrophysics · Physics 2009-11-07 M. Bruggen

Chandra X-ray Observatory has revealed X-ray cavities in many nearby cooling flow clusters. The cavities trace feedback from the central active galactic nulceus (AGN) on the intracluster medium (ICM), an important ingredient in stabilizing…

Cosmology and Nongalactic Astrophysics · Physics 2015-05-14 L. Birzan , D. A. Rafferty , B. R. McNamara , P. E. J. Nulsen , M. W. Wise

Recent suggestions that buoyant radio emitting cavities in the intracluster medium can cause significant reheating of cooling flows are re-examined when the effects of the intracluster magnetic field are included. Expansion of the cavity…

Astrophysics · Physics 2009-11-07 David S. De Young

The gas temperature in the cores of many clusters of galaxies drops inward by about a factor of three or more within the central 100kpc radius. The radiative cooling time drops over the same region from 5 or more Gyr down to about 10^8 yr.…

Astrophysics · Physics 2009-11-07 A. C. Fabian

We present a spectral analysis of cool and cooling gas in 45 cool-core clusters and groups of galaxies obtained from Reflection Grating Spectrometer (RGS) XMM-$Newton$ observations. The high-resolution spectra show FeXVII emission in many…

High Energy Astrophysical Phenomena · Physics 2019-02-20 Haonan Liu , Ciro Pinto , Andrew C. Fabian , Helen R. Russell , Jeremy S. Sanders

(Abridged) We present observations of the cluster of galaxies associated with the X-ray source RX J0820.9+0752 and its dramatic central cluster galaxy (CCG) in the optical and X-ray wavebands.Unlike other cooling flow CCGs studied in…

Astrophysics · Physics 2009-11-07 C. M. Bayer-Kim , C. S. Crawford , S. W. Allen , A. C. Edge , A. C. Fabian

It is well known that the radiative cooling time of the hot X-ray emitting gas in the cores of most clusters of galaxies is less than 10^10 yr. In many clusters the gas temperature also drops towards the centre. If we draw a causal…

Astrophysics · Physics 2015-06-24 A. C. Fabian , J. S. Sanders

We present high resolution ROSAT x-ray and radio observations of three cooling flow clusters containing steep spectrum radio sources at their cores. All three systems exhibit strong signs of interaction between the radio plasma and the hot…

Astrophysics · Physics 2009-10-31 E. Rizza , C. Loken , M. Bliton , K. Roettiger , J. O. Burns , F. N. Owen

Conduction may play an important role in reducing cooling flows in galaxy clusters. We analyse a sample of sixteen objects using Chandra data and find that a balance between conduction and cooling can exist in the hotter clusters (T > 5…

Astrophysics · Physics 2009-09-17 L. M. Voigt , A. C. Fabian