English

Microlensing Optical Depth of the COBE Bulge

Astrophysics 2015-06-24 v1

Abstract

We examine the left-right asymmetry in the cleaned COBE/DIRBE near-infrared data of the inner Galaxy and show (i) that the Galactic bar is probably not seen very nearly end-on, and (ii) that even if it is, it is not highly elongated. The assumption of constant mass-to-light ratio is used to derive simulated terminal-velocity plots for the ISM from our model luminosity distributions. By comparing these plots with observed terminal velocities we determine the mass-to-light ratio of the near-IR bulge and disk. Assuming that all this mass contributes to gravitational microlensing we compute optical depths τ\tau for microlensing in Galactic-centre fields. For three models with bar major axis between 10deg25deg10\deg-25\deg from the Sun-Galactic Center line, the resulting optical depths in Baade's window lie in the range 0.83×106\ltaτ\lta0.89×1060.83\times10^{-6} \lta \tau \lta 0.89\times10^{-6} for main-sequence stars and 1.2×106\ltaτ\lta1.3×1061.2\times10^{-6} \lta \tau \lta 1.3\times10^{-6} for red-clump giants. We discuss a number of uncertainties including possible variations of the near-infrared mass-to-light ratio. We conclude that, although the values predicted from analyzing the COBE and gas velocity data are inconsistent at the 22.5σ2-2.5\sigma level with recent observational determinations of τ\tau, we believe they should be taken seriously.

Keywords

Cite

@article{arxiv.astro-ph/9612026,
  title  = {Microlensing Optical Depth of the COBE Bulge},
  author = {N. Bissantz and P. Englmaier and J. Binney and O. Gerhard},
  journal= {arXiv preprint arXiv:astro-ph/9612026},
  year   = {2015}
}

Comments

9 pages, TeX. 7 figures (gif). Submitted to MNRAS. Also available with full resolution figures as ps-file at http://www.astro.unibas.ch/dynamics/papers.html