Measurements of disk stellar velocity spread versus age show that the power-law slope declines radially for the thin disk, stays nearly flat in azimuthal motion, and rises for the thick disk, with hints of a Sagittarius perturbation within 3 Gyr.
The Galactic Disk North-south Asymmetry in Metallicity May Be A New Tracer for the Disk Warp
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
Galactic disk warp has been widely characterized by stellar distributions and stellar kinematics but has not been traced by stellar chemistry. Here, we use a sample with over 170,000 red clump (RC) stars selected from LAMOST and APOGEE first to establish a correlation between the north-south asymmetry in metallicity ([Fe/H]) and the disk warp. Our results indicate that the height of the [Fe/H] mid-plane for the whole RC sample stars is accurately described as $Z_{w}$ = 0.017 ($R$ $-$ 7.112)$^{2}$ sin($\phi$ $-$ 9.218). This morphology aligns closely with the warp traced by Cepheids, suggesting that the disk north-south asymmetry in [Fe/H] may serve as a new tracer for the Galactic warp. Our detailed analysis of the young/thin disk stars of this RC sample suggests that its warp is well-modeled as $Z_{w}$ = 0.016 ($R$ $-$ 6.507)$^{2}$ sin($\phi$ $-$ 4.240), indicating that the line of node (LON) of the Galactic warp is oriented at 4.240$_{-1.747}^{+1.641}$ degree.
fields
astro-ph.GA 1years
2024 1verdicts
CONDITIONAL 1representative citing papers
citing papers explorer
-
The Age-velocity Dispersion Relations of the Galactic Disk as Revealed by the LAMOST-Gaia Red Clump Stars
Measurements of disk stellar velocity spread versus age show that the power-law slope declines radially for the thin disk, stays nearly flat in azimuthal motion, and rises for the thick disk, with hints of a Sagittarius perturbation within 3 Gyr.