Steady state cooling flow models with gas loss for normal elliptical galaxies

  • Sarazin C
  • Ashe G
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Abstract

A grid of cooling flow models for the hot gas in normal elliptical galaxies is calculated, including the loss of gas due to inhomogeneous cooling. The loss process is modeled as a distributed sink for the gas with the rate of loss being proportional to the local cooling rate. The cooling flow models with gas loss have smaller sonic radii, smaller inflow rates in their central regions, lower densities, and higher temperatures than homogeneous models. The reduction in the amount of hot gas flowing into the center of the models brings the models into much better agreement with the observed X-ray surface brightness profiles of elliptical galaxies. However, there is a large dispersion in the observed X-ray luminosities of ellipticals, and this cannot be explained by variations in the efficiency of gas loss. The gas-loss models have X-ray surface brightness profiles which are much less centrally peaked than the no-gas-loss models.

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Sarazin, C. L., & Ashe, G. A. (1989). Steady state cooling flow models with gas loss for normal elliptical galaxies. The Astrophysical Journal, 345, 22. https://doi.org/10.1086/167877

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