The vertical structure of the spiral galaxy NGC 3501: first stages of the formation of a thin metal-rich disc
arXiv:2301.09621 · doi:10.1093/mnras/stad275
Abstract
We trace the evolution of the edge-on spiral galaxy NGC 3501, making use of its stellar populations extracted from deep integral-field spectroscopy MUSE observations. We present stellar kinematic and population maps, as well as the star formation history, of the south-western half of the galaxy. The derived maps of the stellar line-of-sight velocity and velocity dispersion are quite regular, show disc-like rotation, and no other structural component of the galaxy. However, maps of the stellar populations exhibit structures in the mass-weighted and light-weighted age, total metallicity and [Mg/Fe] abundance. These maps indicate that NGC 3501 is a young galaxy, consisting mostly of stars with ages between 2 to 8 Gyr. Also, they show a thicker more extended structure that is metal-poor and -rich, and another inner metal-rich and -poor one with smaller radial extension. While previous studies revealed that NGC 3501 shows only one morphological disc component in its vertical structure, we divided the galaxy into two regions: an inner metal-rich midplane and a metal-poor thicker envelope. Comparing the star formation history of the inner thinner metal-rich disc and the thicker metal-poor disc, we see that the metal-rich component evolved more steadily, while the metal-poor one experienced several bursts of star formation. We propose this spiral galaxy is being observed in an early evolutionary phase, with a thicker disc already in place and an inner thin disc in an early formation stage. So we are probably witnessing the birth of a future massive thin disc, continuously growing embedded in a preexisting thicker disc.
15 pages, 12 figures. Accepted for publication in MNRAS
References in corpus (32)
- Improving the full spectrum fitting method: accurate convolution with Gauss-Hermite functions
- The mass distribution and gravitational potential of the Milky Way
- The MUSE second-generation VLT instrument
- The Milky Way Tomography with SDSS: II. Stellar Metallicity
- Evolutionary stellar population synthesis with MILES - II. Scaled-solar and α-enhanced models
- The present-day star formation rate of the Milky-Way determined from Spitzer detected young stellar objects
- Reconstructing the Subsurface Three-Dimensional Magnetic Structure of A Solar Active Region Using SDO/HMI Observations
- High-precision abundances of elements in solar twin stars: Trends with stellar age and elemental condensation temperature
- The SAURON project - XII. Kinematic substructures in early-type galaxies: evidence for disks in fast rotators
- Stellar Population gradients in galaxy discs from the CALIFA survey
- On the Formation of Galactic Thick Disks
- Spectroscopic ages and metallicities of stellar populations: validation of full spectrum fitting
- Spatially resolved spectroscopy of early-type galaxies over a range in mass
- Old and young stellar populations in DustPedia galaxies and their role in dust heating
- The Fornax 3D project: unveiling the thick disk origin in FCC 170: signs of accretion?
- A radial age gradient in the geometrically thick disk of the Milky Way
- The AMBRE project: The thick thin disk and thin thick disk of the Milky Way
- The Kinematics of Thick Disks in Nine External Galaxies
- Lick Indices in the Thin and Thick Disks of Edge-On Disk Galaxies
- Catalog of Visually Classified Galaxies in the Local () Universe
- A unified picture of breaks and truncations in spiral galaxies from SDSS and S^{4}G imaging
- Outside-in disk evolution in the LMC
- Comparison of Stellar Population Model Predictions Using Optical and Infrared Spectroscopy
- From outside-in to inside-out: galaxy assembly mode depends on stellar mass
- The Fornax 3D project: Thick disks in a cluster environment
- Yule-Simpson's paradox in Galactic Archaeology
- Optical imaging for the Spitzer Survey of Stellar Structure in Galaxies. Data release and notes on interacting galaxies
- NGC 5746: formation history of a massive disc-dominated galaxy
- The kinematics of local thick discs do not support an accretion origin
- A monolithic collapse origin for the thin/thick disc structure of ESO 243-49
- An [/Fe]-enhanced thick disk in a Milky Way Analogue
- Long-slit Spectroscopy of Edge-on Low Surface Brightness Galaxies