A comprehensive kinematic model of the LMC disk from star clusters and field stars using Gaia DR3: Tracing the disk characteristics, rotation, bar, and the outliers
arXiv:2404.18658 · doi:10.3847/1538-4357/ad4453
Abstract
The internal kinematics of the Large Magellanic Cloud (LMC) disk have been modeled by several studies using different tracers with varying coverage, resulting in a range of parameters. Here, we modeled the LMC disk using 1705 star clusters and field stars, based on a robust Markov Chain Monte Carlo (MCMC) method, using the Gaia DR3 data. The dependency of model parameters on the age, coverage, and strength of the clusters are also presented. This is the first comprehensive 2D kinematic study using star clusters. Red clump (RC) stars and young main-sequence stars are also modeled for comparison. The clusters and field stars are found to have distinctly different kinematic centers, disk inclination, position angle of the line of nodes, and scale radius. We also note a significant radial variation of the disk parameters. Clusters and young stars are found to have a large residual proper motion and a relatively large velocity dispersion when compared to the RC field population, which could be due to perturbation from the bar and spiral arms. We traced the presence of large residual proper motion and non-circular motion among clusters likely to be due to the bar and detected a decrease in the scale radius as a result of the possible evolution of the bar. The kinematically deviant clusters point to a spatio-temporal disturbance in the LMC disk, matching with the expected impact factor and time of the recent collision between the LMC and the Small Magellanic Cloud.
Accepted for publication in ApJ. 24 pages, 13 figures, 7 tables
References in corpus (12)
- Array Programming with NumPy
- A distance to the Large Magellanic Cloud that is precise to one per cent
- Are the Magellanic Clouds on their First Passage about the Milky Way?
- Is the SMC Bound to the LMC? The HST Proper Motion of the SMC
- The recent LMC-SMC collision: Timing and impact parameter constraints from comparison of Gaia LMC disk kinematics and N-body simulations
- A SkyMapper view of the Large Magellanic Cloud: The dynamics of stellar populations
- Star Clusters in the Magellanic Clouds-1: Parameterisation and Classification of 1072 Clusters in the LMC
- H I Kinematics of the Large Magellanic Cloud revisited : Evidence of possible infall and outflow
- Kinematic Structure of the Large Magellanic Cloud Globular Cluster System from Gaia eDR3 and Hubble Space Telescope Proper Motions
- Shape of the outer stellar warp in the Large Magellanic Cloud disk
- Probing the Large Magellanic Cloud's recent chemical enrichment history through its star clusters
- Spatio-temporal map of star clusters in the Magellanic Clouds using Gaia: Synchronized peaks and radial shrinkage of cluster formation