Resolving the Disc-Halo Degeneracy I: A Look at NGC 628
arXiv:1802.00465 · doi:10.1093/mnras/sty310
Abstract
The decomposition of the rotation curve of galaxies into contribution from the disc and dark halo remains uncertain and depends on the adopted mass to light ratio (M/L) of the disc. Given the vertical velocity dispersion of stars and disc scale height, the disc surface mass density and hence the M/L can be estimated. We address a conceptual problem with previous measurements of the scale height and dispersion. When using this method, the dispersion and scale height must refer to the same population of stars. The scale height is obtained from near-IR studies of edge-on galaxies and is weighted towards older kinematically hotter stars, whereas the dispersion obtained from integrated light in the optical bands includes stars of all ages. We aim to extract the dispersion for the hotter stars, so that it can then be used with the correct scale height to obtain the disc surface mass density. We use a sample of planetary nebulae (PNe) as dynamical tracers in the face-on galaxy NGC 628. We extract two different dispersions from its velocity histogram -- representing the older and younger PNe. We also present complementary stellar absorption spectra in the inner regions of this galaxy and use a direct pixel fitting technique to extract the two components. Our analysis concludes that previous studies, which do not take account of the young disc, underestimate the disc surface mass density by a factor of ~ 2. This is sufficient to make a maximal disc for NGC 628 appear like a submaximal disc.
24 pages, 18 figures, 7 tables; accepted for publication in MNRAS
References in corpus (16)
- The propagation of uncertainties in stellar population synthesis modeling I: The relevance of uncertain aspects of stellar evolution and the IMF to the derived physical properties of galaxies
- Improving the full spectrum fitting method: accurate convolution with Gauss-Hermite functions
- New constraints on the chemical evolution of the solar neighbourhood and Galactic disc(s). Improved astrophysical parameters for the Geneva-Copenhagen Survey
- High-resolution dark matter density profiles of THINGS dwarf galaxies: Correcting for non-circular motions
- Kinematic properties of early-type galaxy haloes using planetary nebulae
- A deep kinematic survey of planetary nebulae in the Andromeda Galaxy using the Planetary Nebula Spectrograph
- Planetary Nebulae in Face-On Spiral Galaxies. I. Planetary Nebula Photometry and Distances
- The inner structure of haloes in Cold+Warm dark matter models
- The Multi-Wavelength Tully-Fisher relation with spatially resolved HI kinematics
- MOA-II Galactic Microlensing Constraints: The Inner Milky Way has a Low Dark Matter Fraction and a Near Maximal Disk
- On the Global Mass Distribution in Disk Galaxies
- Stellar population synthesis models between 2.5 and 5 μm based on the empirical IRTF stellar library
- Evolution of Structure in Late-type Spiral Galaxies I: Ionized Gas Kinematics in NGC 628
- Being WISE I: Validating Stellar Population Models and M/L ratios at 3.4 and 4.6 microns
- Resolved magnetic structures in the disk-halo interface of NGC 628
- The Planetary Nebula Spectrograph survey of S0 galaxy kinematics. Data and Overview
Cited by in corpus (30)
- Dynamical heating across the Milky Way disc using APOGEE and
- From galactic bars to the Hubble tension: weighing up the astrophysical evidence for Milgromian gravity
- MIGHTEE-HI: The HI emission project of the MeerKAT MIGHTEE survey
- Dark matters on the scale of galaxies
- Planetary Nebulae: Sources of Enlightenment
- Combining Stellar Populations with Orbit-Superposition Dynamical Modelling - the Formation History of the Lenticular Galaxy NGC 3115
- The Fornax Cluster VLT Spectroscopic Survey II - Planetary Nebulae kinematics within 200 kpc of the cluster core
- Three dynamically distinct stellar populations in the halo of M49
- A preserved high-z compact progenitor in the heart of NGC3311 revealed with MUSE 2D stellar population analysis
- The survey of planetary nebulae in Andromeda (M 31) V. Chemical enrichment of the thin and thicker discs of Andromeda. Oxygen to argon abundance ratios for planetary nebulae and H II regions
- The Panchromatic Hubble Andromeda Treasury: Triangulum Extended Region (PHATTER). III. The Mass Function of Young Star Clusters in M33
- The survey of planetary nebulae in Andromeda (M31). IV. Radial oxygen and argon abundance gradients of the thin and thicker disc
- Galaxy Zoo: constraining the origin of spiral arms
- Comparing the Inner and Outer Star Forming Complexes in the Nearby Spiral Galaxies NGC 628, NGC 5457 and NGC 6946 using UVIT Observations
- Resolved and Integrated Stellar Masses in the SDSS-IV/MaNGA Survey, Paper II: Applications of PCA-based stellar mass estimates
- Resolving the Disc-Halo Degeneracy II: NGC 6946
- The survey of planetary nebulae in Andromeda (M31) VI. Kinematics of M31 inner-halo substructures and comparison with major-merger simulation predictions
- Resolved and Integrated Stellar Masses in the SDSS-IV/MaNGA Survey, Paper I: PCA spectral fitting & stellar mass-to-light ratio estimates
- Zoom-in cosmological hydrodynamical simulation of a star-forming barred, spiral galaxy at redshift z=2
- Mapping non-axisymmetric velocity fields of external galaxies
- MUSE crowded field 3D spectroscopy in NGC 300 : IV. Planetary nebula luminosity function
- Bar formation in submaximal discs: a challenge for ΛCDM
- Observational signatures of the dust size evolution in isolated galaxy simulations
- The PICS Project. I. The impact of metallicity and helium abundance on the bright end of the planetary nebula luminosity function
- Planetary Nebulae and How to Find Them: Color Identification in Big Broadband Surveys
- The Volumetric Extended-Schmidt Law: A Unity Slope
- The survey of Planetary Nebulae in Andromeda (M31): I. Imaging the disk and halo with MegaCam@CFHT
- An Integral Field Spectroscopy Study Of Thin And Thick Discs In IC 2531
- Towards Precision Cosmology With Improved PNLF Distances Using VLT-MUSE. III. Impact of Stellar Populations in Early-Type Galaxy
- Revealing the Connection Between the Filamentary Hierarchy and Star Cluster Formation in a Simulated NGC 628 Galaxy