A New Photometric Model of the Galactic Bar using Red Clump Giants
Abstract
We present a study of the luminosity density distribution of the Galactic bar using number counts of red clump giants (RCGs) from the OGLE-III survey. The data were recently published by Nataf et al. (2013) for 9019 fields towards the bulge and have RC stars over a viewing area of . The data include the number counts, mean distance modulus (), dispersion in and full error matrix, from which we fit the data with several tri-axial parametric models. We use the Markov Chain Monte Carlo (MCMC) method to explore the parameter space and find that the best-fit model is the model, with the distance to the GC is 8.13 kpc, the ratio of semi-major and semi-minor bar axis scale lengths in the Galactic plane , and vertical bar scale length , is (close to being prolate). The scale length of the stellar density profile along the bar's major axis is 0.67 kpc and has an angle of , slightly larger than the value obtained from a similar study based on OGLE-II data. The number of estimated RC stars within the field of view is , which is systematically lower than the observed value. We subtract the smooth parametric model from the observed counts and find that the residuals are consistent with the presence of an X-shaped structure in the Galactic centre, the excess to the estimated mass content is . We estimate the total mass of the bar is . Our results can be used as a key ingredient to construct new density models of the Milky Way and will have implications on the predictions of the optical depth to gravitational microlensing and the patterns of hydrodynamical gas flow in the Milky Way.
Keywords
Cite
@article{arxiv.1303.6430,
title = {A New Photometric Model of the Galactic Bar using Red Clump Giants},
author = {Liang Cao and Shude Mao and David Nataf and Nicholas J. Rattenbury and Andrew Gould},
journal= {arXiv preprint arXiv:1303.6430},
year = {2013}
}
Comments
15 pages, 6 figures, 4 tables. MNRAS accepted