The Stellar Distribution Function and Local Vertical Potential from Gaia DR2
arXiv:2101.07080 · doi:10.1093/mnras/stab574
Abstract
We develop a novel method to simultaneously determine the vertical potential, force and stellar phase space distribution function (DF) in our local patch of the Galaxy. We assume that the Solar Neighborhood can be treated as a one-dimensional system in dynamical equilibrium and directly fit the number density in the plane to what we call the Rational Linear DF (RLDF) model. This model can be regarded as a continuous sum of isothermal DFs though it has only one more parameter than the isothermal model. We apply our method to a sample of giant stars from Gaia Data Release 2 and show that the RLDF provides an excellent fit to the data. The well-known phase space spiral emerges in the residual map of the plane. We use the best-fit potential to plot the residuals in terms of the frequency and angle of vertical oscillations and show that the spiral maps into a straight line. From its slope, we estimate that the phase spirals were generated by a perturbation Myr years ago. We also determine the differential surface density as a function of vertical velocity dispersion, a.k.a. the vertical temperature distribution. The result is qualitatively similar to what was previously found for SDSS/SEGUE G dwarfs. Finally, we address parameter degeneracies and the validity of the 1D approximation. Particularly, the mid-plane density derived from a cold subsample, where the 1D approximation is more secure, is closer to literature values than that derived from the sample as a whole.
15 pages, 16 figures
References in corpus (17)
- The Gaia mission
- The Local Dark Matter Density
- The Milky Way's circular velocity curve between 4 and 14 kpc from APOGEE data
- On the mass-to-light ratio of the local Galactic disc and the optical luminosity of the Galaxy
- Constraining the Galaxy's dark halo with RAVE stars
- Galactic masers and the Milky Way circular velocity
- Distances and parallax bias in Gaia DR2
- Weighing the local dark matter with RAVE red clump stars
- The red clump absolute magnitude based on revised Hipparcos parallaxes
- Empirical photometric calibration of the Gaia Red Clump: colours, effective temperature and absolute magnitude
- Red clump stars and Gaia: Calibration of the standard candle using a hierarchical probabilistic model
- Measuring the local dark matter density with LAMOST DR5 and Gaia DR2
- Lessons from the curious case of the `fastest' star in Gaia DR2
- Galactoseismology and the Local Density of Dark Matter
- GalactICS with Gas
- Galactic Kinematics Derived from Data in the RAVE5, UCAC4, PPMXL, and Gaia TGAS Catalogs
- Testing the distance scale of the Gaia TGAS catalogue by kinematic method