English

The polytropic state of the intracluster medium in the X-COP cluster sample

Cosmology and Nongalactic Astrophysics 2019-06-26 v2

Abstract

In this work, we investigate the relation between the radially-resolved thermodynamic quantities of the intracluster medium in the X-COP cluster sample, aiming to assess the stratification properties of the ICM. We model the relations between radius, gas temperature, density and pressure using a combination of power-laws, also evaluating the intrinsic scatter in these relations. We show that the gas pressure is remarkably well correlated to the density, with very small scatter. Also, the temperature correlates with gas density with similar scatter. The slopes of these relations have values that show a clear transition from the inner cluster regions to the outskirts. This transition occurs at the radius rt=0.19(±0.04)R500r_t = 0.19(\pm0.04)R_{500} and electron density nt=(1.91±0.21)103cm3E2(z)n_t = (1.91\pm0.21)\cdot10^{-3} cm^{-3} E^2 (z). We find that above 0.2 R500R_{500} the radial thermodynamic profiles are accurately reproduced by a well defined and physically motivated framework, where the dark matter follows the NFW potential and the gas is represented by a polytropic equation of state. By modeling the gas temperature dependence upon both the gas density and radius, we propose a new method to reconstruct the hydrostatic mass profile based only on the quite inexpensive measurement of the gas density profile.

Keywords

Cite

@article{arxiv.1906.00977,
  title  = {The polytropic state of the intracluster medium in the X-COP cluster sample},
  author = {Vittorio Ghirardini and Stefano Ettori and Dominique Eckert and Silvano Molendi},
  journal= {arXiv preprint arXiv:1906.00977},
  year   = {2019}
}

Comments

9 pages, 8 figures, accepted by A&A