English

Baryonic Content of Galactic Halos and Constraints on Models for Structure Formation

Astrophysics 2007-05-23 v1

Abstract

The recent detection of microlensing of stars of LMC by compact objects in the halo of our galaxy suggests that our galaxy is surrounded by a non-luminous halo made of compact objects with mass of about (0.030.5)\msun(0.03-0.5) \msun. The rate of detection could be consistent with the assumption that these halo objects are distributed with a softened isothermal profile with a core radius of (28)(2-8)Kpc and asymptotic circular velocity of 220\kms220\kms. Taken in isolation, this observation is consistent with a universe having only baryonic dark matter (BDM, hereafter) contributing Ωb=Ωtotal0.06\Omega_b=\Omega_{total}\simeq0.06 which will, however, violently contradict several other large scale observations, notably the COBE-DMR results. Alternatively one can assume that galaxies like ours are surrounded by both BDM and non-baryonic dark matter (NBDM, hereafter). A model with a single component for NBDM with, say, Ωb0.06,Ωcdm0.94\Omega_b\simeq0.06,\Omega_{cdm}\simeq0.94, is also ruled out if we demand that: (i) at least thirty percent of the dark matter density within 100100 kpc is baryonic and (ii) galactic structures should have collapsed by redshift of z=1z=1. Further if half or more of the dark matter within 100kpc100 kpc is baryonic then the maximum value of Ωdm\Omega_{dm}, contributed by NBDM clustered at galactic scales, can only be about Ωmax0.29\Omega_{max}\simeq0.29. Models with C+HDM cannot satisfy this constraint but Λ\Lambda+ CDM models are still

Keywords

Cite

@article{arxiv.astro-ph/9310015,
  title  = {Baryonic Content of Galactic Halos and Constraints on Models for Structure Formation},
  author = {T. Padmanabhan and K. Subramanian},
  journal= {arXiv preprint arXiv:astro-ph/9310015},
  year   = {2007}
}

Comments

4 pages,IUCAA-23/93; sept,93; submitted for publication