Baryonic Content of Galactic Halos and Constraints on Models for Structure Formation
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 . 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 Kpc and asymptotic circular velocity of . Taken in isolation, this observation is consistent with a universe having only baryonic dark matter (BDM, hereafter) contributing 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, , is also ruled out if we demand that: (i) at least thirty percent of the dark matter density within kpc is baryonic and (ii) galactic structures should have collapsed by redshift of . Further if half or more of the dark matter within is baryonic then the maximum value of , contributed by NBDM clustered at galactic scales, can only be about . Models with C+HDM cannot satisfy this constraint but + CDM models are still
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