English

Evidence for massive warm-hot circumgalactic medium around NGC 3221

Astrophysics of Galaxies 2020-01-08 v2 High Energy Astrophysical Phenomena

Abstract

We report a 3.4σ\sigma detection of the warm-hot, massive, extended circumgalactic medium (CGM) around an L^\star star-forming spiral galaxy NGC 3221, using deep Suzaku observations. The temperature of the gas is 106.110^{6.1} K, comparable to that of the Milky Way CGM. The spatial extent of the gas is at least 150150 kpc. For a β\beta-model of density profile with solar abundance, the central emission measure is EM = 3±1×1053\pm 1 \times 10^{-5} cm6^{-6} kpc and the central electron density is neo=4±1×104n_{eo} = 4\pm 1 \times10^{-4} cm3^{-3}, with a slope of β=0.56\beta = 0.56. We investigate a range of β\beta values, and find that the details of the density profile do not change our results significantly. The mass of the warm-hot gas, assuming a metallicity of 13\frac{1}{3} Z_\odot is 16±3×101016 \pm 3 \times 10^{10} M_\odot, being the most massive baryon component of NGC 3221. The baryon fraction is fbf_b = 0.120 ±\pm 0.036 (statistical) 0.048+0.104^{+0.104}_{-0.048} (systematic), consistent with the cosmological mean value, closing the baryon budget of this galaxy. We also investigated the missing metals problem in conjunction with the missing baryons problem and conclude that metals are likely to be preferentially expelled from the galaxy. Ours is the first detection of an extended warm-hot CGM around an external L^\star star-forming spiral galaxy, where the CGM likely accounts for the missing galactic baryons.

Keywords

Cite

@article{arxiv.1810.12454,
  title  = {Evidence for massive warm-hot circumgalactic medium around NGC 3221},
  author = {Sanskriti Das and Smita Mathur and Anjali Gupta and Fabrizio Nicastro and Yair Krongold and Cody Null},
  journal= {arXiv preprint arXiv:1810.12454},
  year   = {2020}
}

Comments

Accepted in the Astrophysical Journal (main)