New constraints on a triaxial model of the Galaxy
arXiv:astro-ph/9903426 · doi:10.1046/j.1365-8711.1999.02672.x
Abstract
We determine the values of parameters of an N-body model for the Galaxy developed by Fux via comparison with an unbiased, homogeneous sample of OH/IR stars. Via Monte-Carlo simulation, we find the plausibilities of the best-fitting models, as well as their errors. The parameters that are constrained best by these projected data are the total mass of the model and the viewing angle of the central Bar, although the distribution of the latter has multiple maxima. The best model has a viewing angle of 44 degrees, semi-major axis of 2.5 kpc, a bar mass of 1.7E10 solar masses and a tangential velocity of the local standard of rest of 171 km/s . We argue that the lower values that are commonly found from stellar data for the viewing angle (around 25 degrees) arise when too few coordinates are available, when the longitude range is too narrow or when low latitudes are excluded from the fit. The new constraints on the viewing angle of the galactic Bar from stellar line-of-sight velocities decrease further the ability of the Bar's distribution to account for the observed micro-lensing optical depth toward Baade's window : our model reproduces only half the observed value. The signal of triaxiality diminishes quickly with increasing latitude, fading within approximately one scaleheight. This suggests that Baade's window is not a very appropriate region to sample Bar properties.
10 pages, 8 figures, TeX, accepted for publication in MNRAS
References in corpus (1)
Cited by in corpus (52)
- Improved Estimates of the Milky Way's Stellar Mass and Star Formation Rate from Hierarchical Bayesian Meta-Analysis
- Our Milky Way as a Pure-Disk Galaxy -- A Challenge for Galaxy Formation
- The Bulge Radial Velocity Assay (BRAVA): II. Complete Sample and Data Release
- Order and chaos in the local disc stellar kinematics induced by the Galactic bar
- The MACHO project: Microlensing Optical Depth towards the Galactic Bulge from Difference Image Analysis
- Stellar Proper Motions in the Galactic Bulge from deep HST ACS/WFC Photometry
- The 6-GHz methanol multibeam maser catalogue II: Galactic longitudes 6 to 20
- Detection of the old stellar component of the major Galactic bar
- Stellar populations in the Galactic bulge
- Infrared stellar populations in the central parts of the Milky Way galaxy
- Do most planetary nebulae derive from binaries? I Population synthesis model of the galactic planetary nebula population produced by singlestars and binaries
- Tracing the long bar with red-clump giants
- The properties of the Galactic bar implied by gas kinematics in the inner Milky Way
- The Long Bar in the Milky Way. Corroboration of an old hypothesis
- A Distinct Structure Inside the Galactic Bar
- Microlensing optical depth and event rate toward the Galactic bulge from 8 yr of OGLE-IV observations
- The long Galactic bar as seen by UKIDSS Galactic Plane Survey
- A boxy bulge in the Milky Way. Inversion of the stellar statistics equation with 2MASS data
- GASKAP -- The Galactic ASKAP Survey
- A Galactic Bar to Beyond the Solar Circle and its Relevance for Microlensing
- Mira Variables in the OGLE Bulge fields
- A Dynamical Model of the Inner Galaxy
- Evolution over time of the Milky Way's disc shape
- The Vertical X-shaped Structure in the Milky Way: Evidence from a Simple Boxy Bulge Model
- 3D outer bulge structure from near infrared star counts
- Major structures of the inner Galaxy delineated by 6.7-GHz methanol masers
- Theory of pixel lensing towards M31 I: the density contribution and mass of MACHOs
- Searching for the in-plane Galactic bar and ring in DENIS
- Inversion of stellar statistics equation for the Galactic Bulge
- Something about the structure of the Galaxy
- Microlensing constraints on the Galactic Bulge Initial Mass Function
- Dynamics of the Galactic Bulge using Planetary Nebulae
- The distribution of maser stars in the inner Milky Way: the effect of a weak, rotating bar
- The Stellar Halo in the Inner Milky Way: Predicted Shape and Kinematics
- A robust statistical estimation of the basic parameters of single stellar populations. I. Method
- Milky Way rotation curve from proper motions of red clump giants
- Correlations between kinematics and metallicity in the Galactic bulge: a review
- A Schwarzschild model of the Galactic bar with initial density from N-body simulations
- Quantifying the (X/peanut)-shaped Structure of the Milky Way - New Constraints on the Bar Geometry
- Stellar density distribution in the NIR on the Galactic plane at longitudes 15-27 deg. Clues for the Galactic bar ?
- Are high velocity peaks in the Milky Way bulge due to the bar?
- Theoretical Models of the Galactic Bulge
- An inner ring and the micro lensing toward the Bulge
- The long bar as seen by the VVV Survey: II. Star counts
- Metallicity distribution of red giants in the Inner Galaxy from Near Infrared spectra
- Bayesian isochrone fitting and stellar ages
- On the detection of CO and mass loss of Bulge OH/IR stars
- Hercules and Wolf 630 Stellar Streams and Galactic Bar Kinematics
- Bar-driven injection of intergalactic matter into galactic halos
- Dynamical evolution of two associated galactic bars
- Pixel lensing observations towards globular clusters
- Source blending effects on microlensing time-histograms and optical depth determination