A Galactic Ring of Minimum Stellar Density Near the Solar Orbit Radius
arXiv:1308.0627 · doi:10.1093/mnras/stt1454
Abstract
We analyse the secular effects of a long-lived Galactic spiral structure on the stellar orbits with mean radii close to the corotation resonance. By test-particle simulations and different spiral potential models with parameters constrained on observations, we verified the formation of a minimum with amplitude ~ 30% - 40% of the background disk stellar density at corotation. Such minimum is formed by the secular angular momentum transfer between stars and the spiral density wave on both sides of corotation. We demonstrate that the secular loss (gain) of angular momentum and decrease (increase) of mean orbital radius of stars just inside (outside) corotation can counterbalance the opposite trend of exchange of angular momentum shown by stars orbiting the librational points L_4/5 at the corotation circle. Such secular processes actually allow steady spiral waves to promote radial migration across corotation. We propose some observational evidences for the minimum stellar density in the Galactic disk, such as its direct relation to the minimum in the observed rotation curve of the Galaxy at the radius R ~ 9 kpc (for R_0 = 7.5 kpc), as well as its association with a minimum in the distribution of Galactic radii of a sample of open clusters older than 1 Gyr. The closeness of the solar orbit radius to the corotation resonance implies that the solar orbit lies inside a ring of minimum surface density (stellar + gas). This also implies in a correction to larger values for the estimated total mass of the Galactic disk, and consequently, a greater contribution of the disk component to the inner rotation curve of the Galaxy.
25 pages, 14 figures
References in corpus (13)
- Trigonometric Parallaxes of Massive Star Forming Regions: VI. Galactic Structure, Fundamental Parameters and Non-Circular Motions
- The Milky Way's Circular Velocity Curve to 60 kpc and an Estimate of the Dark Matter Halo Mass from Kinematics of ~2400 SDSS Blue Horizontal Branch Stars
- On the mass-to-light ratio of the local Galactic disc and the optical luminosity of the Galaxy
- Fundamental Parameters of the Milky Way Galaxy Based on VLBI astrometry
- Gas flow models in the Milky Way embedded bars
- Elemental Abundance Ratios in Stars of the Outer Galactic Disk. IV. A New Sample of Open Clusters
- The properties of the local spiral arms from RAVE data: two-dimensional density wave approach
- The Hyades stream: evaporated cluster or intrusion from the inner disk?
- The long Galactic bar as seen by UKIDSS Galactic Plane Survey
- On the current status of open-cluster parameters
- Radial Metallicity Distribution Breaks at Corotation Radius in Spiral Galaxies
- A new model for gravitational potential perturbations in disks of spiral galaxies. An application to our Galaxy
- Estimation of the Galactic Spiral Pattern Speed from Cepheids
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- Models for the 3-D axisymmetric gravitational potential of the Milky Way Galaxy - A detailed modelling of the Galactic disk
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- The dynamical origin of the Local arm and the Sun's trapped orbit
- Modelling resonances and orbital chaos in disk galaxies. Application to a Milky Way spiral model
- Spiral arm kinematics for Milky Way stellar populations
- A new resonance-like feature in the outer disc of the Milky Way
- The OPD Photometric Survey of Open Clusters II. robust determination of the fundamental parameters of 24 open clusters
- The distribution of open clusters in the Galaxy