English

Halo White Dwarfs and the Hot Intergalactic Medium

Astrophysics 2009-10-28 v2

Abstract

We present a schematic model for the formation of baryonic galactic halos and hot gas in the Local Group and the intergalactic medium. We follow the dynamics, chemical evolution, heat flow and gas flows of a hierarchy of scales, including: protogalactic clouds, galactic halos, and the Local Group itself. Within this hierarchy, the Galaxy is built via mergers of protogalactic fragments. We find that early bursts of star formation lead to a large population of remnants (mostly white dwarfs), which would reside presently in the halo and contribute to the dark component observed in the microlensing experiments. The hot, metal-rich gas from early starbursts and merging evaporates from the clouds and is eventually incorporated into the intergalactic medium. The model thus suggests that most microlensing objects could be white dwarfs (m0.5\msolm \sim 0.5 \msol), which comprise a significant fraction of the halo mass. Furthermore, the Local Group could have a component of metal-rich hot gas similar to, although less than, that observed in larger clusters. We discuss the known constraints on such a scenario and show that all local observations can be satisfied with present data in this model. The best-fit model has a halo that is 40% baryonic, with an upper limit of 77%.

Keywords

Cite

@article{arxiv.astro-ph/9604095,
  title  = {Halo White Dwarfs and the Hot Intergalactic Medium},
  author = {Brian D. Fields and Grant J. Mathews and David N. Schramm},
  journal= {arXiv preprint arXiv:astro-ph/9604095},
  year   = {2009}
}

Comments

15 pages, LaTex, uses aas2pp4.sty, 7 postscript figures. Substantially revised and enlarged to a full-length article. Somewhat different quantitative results, but qualitative conclusions unchanged

R2 v1 2026-07-22T09:28:47.122Z