
The microlensing rate and mass function versus dynamics of the Galactic bar
Author(s) -
Zhao HongSheng,
De Zeeuw P. Tim
Publication year - 1998
Publication title -
monthly notices of the royal astronomical society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.058
H-Index - 383
eISSN - 1365-2966
pISSN - 0035-8711
DOI - 10.1046/j.1365-8711.1998.01496.x
Subject(s) - gravitational microlensing , physics , bulge , astrophysics , galaxy , galactic center , bar (unit) , mass distribution , astronomy , meteorology
With the steady increase of the sample size of observed microlenses towards the central regions of the Galaxy, the main source of the uncertainty in the lens mass will shift from the simple Poisson noise to the intrinsic non‐uniqueness of our dynamical models of the inner Galaxy, particularly the Galactic bar. We use a set of simple self‐consistent bar models to investigate how the microlensing event rate varies as a function of axis ratio, bar angle and velocity distribution. The non‐uniqueness of the velocity distribution of the bar model adds a significant uncertainty (by about a factor of 1.5) to any prediction of the lens mass. Kinematic data and self‐consistent models are critical to lift the non‐uniqueness. We discuss the implications of these results for the interpretation of microlensing observations of the Galactic bulge. In particular we show that Freeman bar models scaled to the mass of the Galactic bulge/bar imply a typical lens mass of around 0.8 M⊙, a factor of 3–5 times larger than the value from other models.