The North/South Asymmetry of the Galaxy: Possible Connection to the Vertical Phase Space Snail
arXiv:2208.03667 · doi:10.3847/1538-4357/ac86cd
Abstract
The Galaxy is found to be in disequilibrium based on recent findings of the North/South (N/S) asymmetry and the phase mixing signatures, such as a phase spiral (snail) structure in the vertical phase space (). We show that the N/S asymmetry in a tracer population of dwarfs may be quantitatively modeled with a simple phase snail model superimposed on a smooth equilibrium background. As the phase snail intersects with the axis, the number density is enhanced, and the velocity dispersion () is decreased relative to the other side of the Galactic plane. Fitting only to the observed asymmetric N/S profiles, we obtain reasonable parameters for the phase space snail and the potential utilized in modeling the background, despite the complex dependence of the model on the potential parameters and the significant selection effects of the data. Both the snail shape and the N/S number density difference given by our best-fit model are consistent with previous observations. The equilibrium background implies a local dark matter density of . The vertical bulk motion of our model is similar to the observation, but with a 1.2 shift. Our work demonstrates the strong correlation between the phase space snail and the N/S asymmetry. Future observational constraints will facilitate more comprehensive snail models to unravel the Milky Way potential and the perturbation history encoded in the snail feature.
14 pages + Appendix, 10 figures. Accepted for publication on ApJ
References in corpus (23)
- The Local Dark Matter Density
- On the mass-to-light ratio of the local Galactic disc and the optical luminosity of the Galaxy
- On the local dark matter density
- Dark matter local density determination: recent observations and future prospects
- A new determination of the local dark matter density from the kinematics of K dwarfs
- Bending and Breathing Modes of the Galactic Disk
- Radial and vertical flows induced by galactic spiral arms: likely contributors to our "wobbly Galaxy''
- Galactic seismology: the evolving "phase spiral" after the Sagittarius dwarf impact
- Weighing the local dark matter with RAVE red clump stars
- The binarity of Milky Way F,G,K stars as a function of effective temperature and metallicity
- The Vertical Structure and Kinematics of Grand Design Spirals
- Measuring the local dark matter density with LAMOST DR5 and Gaia DR2
- The vertical effects of disc non-axisymmetries from perturbation theory: the case of the Galactic bar
- Weighing the Galactic disk using phase-space spirals II. Most stringent constraints to a thin dark disk using Gaia EDR3
- Kinematics and dynamics of Gaia red clump stars
- Galactoseismology and the Local Density of Dark Matter
- Implications of a time-varying Galactic potential for determinations of the dynamical surface density
- Exploring the pertubed Milky Way disk and the substructures of the outer disk
- The Stellar Distribution Function and Local Vertical Potential from Gaia DR2
- Vertical Phase Mixing across the Galactic Disk
- Weighing the Galactic disk using phase-space spirals I. Tests on one-dimensional simulations
- The Galactic disc phase spirals at different Galactic positions revealed by Gaia and LAMOST data
- Ripple patterns in in-plane velocities of OB stars from LAMOST and Gaia
Cited by in corpus (6)
- Mapping Dark Matter in the Milky Way using Normalizing Flows and Gaia DR3
- Investigating the amplitude and rotation of the phase spiral in the Milky Way outer disc
- Local dark matter density from Gaia DR3 K-dwarfs using Gaussian processes
- Deciphering the Kinematic Substructure of Local Dark Matter with LAMOST K Giants
- Kinematic-Chemical analysis and Time tagging for the Diagonal Ridge Structure of the Galactic Outer Disk with LAMOST Red Giant Branch Stars
- Dynamical Models of the Milky Way in Action Space with LAMOST DR8 and GAIA EDR3