Constraints on Radial Migration in Spiral Galaxies I. Analytic Criterion for Capture at Corotation
arXiv:1412.6110 · doi:10.1093/mnras/stu2683
Abstract
Near the corotation resonance of a transient spiral arm, stellar orbital angular momenta may be changed without inducing significant kinematic heating, resulting in what has come to be known as radial migration. When radial migration is very efficient, a large fraction of disk stars experiences significant, permanent changes to their individual orbital angular momenta over the lifetime of the disk, having strong implications for the evolution of disk galaxies. The first step for a star in a spiral disk to migrate radially is to be captured in a "trapped" orbit, associated with the corotation resonance of the spiral pattern. An analytic criterion for determining whether or not a star is in a trapped orbit has previously been derived only for stars with zero random orbital energy in the presence of a spiral with fixed properties. In this first paper in a series, we derive an analytic criterion appropriate for a star that is on an orbit of finite random orbital energy. Our new criterion demonstrates that whether or not a star is in a "trapped" orbit primarily depends on the star's orbital angular momentum. This criterion could be a powerful tool in the interpretation of the results of N-body simulations. In future papers of this series, we apply our criterion to explore the physical parameters important to determining the efficiency of radial migration and its potential importance to disk evolution.
21 pages, 10 figures
References in corpus (3)
Cited by in corpus (8)
- Quantifying stellar radial migration in an N-body simulation: blurring, churning, and the outer regions of galaxy discs
- Local Simulations of Spiral Galaxies with the TIGRESS Framework: I. Star Formation and Arm Spurs/Feathers
- Quantifying radial migration in the Milky Way: Inefficient over short timescales but essential to the very outer disc beyond ~15 kpc
- Constraints on Radial Migration in Spiral Galaxies - II. Angular momentum distribution and preferential migration
- Migration in the shearing sheet and estimates for young open cluster migration
- Modelling resonances and orbital chaos in disk galaxies. Application to a Milky Way spiral model
- The Impact of Stellar Migration on Disk Outskirts
- Cardinal kinematics: I. Rotation fields of the APOGEE Survey