A physically motivated definition for the size of galaxies in an era of ultra-deep imaging
arXiv:2001.02689 · doi:10.1093/mnras/staa236
Abstract
Present-day multi-wavelength deep imaging surveys allow to characterise the outskirts of galaxies with unprecedented precision. Taking advantage of this situation, we define a new physically motivated measurement of size for galaxies based on the expected location of the gas density threshold for star formation. Employing both theoretical and observational arguments, we use the stellar mass density contour at 1 pc as a proxy for this density threshold for star formation. This choice makes our size definition operative. With this new size measure, the intrinsic scatter of the global stellar mass () - size relation (explored over five orders of magnitude in stellar mass) decreases to 0.06 dex. This value is 2.5 times smaller than the scatter measured using the effective radius (0.15 dex) and between 1.5 and 1.8 times smaller than those using other traditional size indicators such as (0.09 dex), the Holmberg radius (0.09 dex) and the half-mass radius (0.11 dex). Moreover, galaxies with 10 increase monotonically in size following a power-law with a slope very close to 1/3, equivalent to an average stellar mass 3D density of 4.510 pc for galaxies within this mass range. Galaxies with 10 show a different slope with stellar mass, which is suggestive of a larger gas density threshold for star formation at the epoch when their star formation peaks.
19 pages, 10 figures, MNRAS, in press. Key results of the paper are shown in Figures 2, 3 and 4. Chamba et al. (2020) applies this new size definition to ultra-diffuse galaxies showing that they have sizes of dwarf galaxies
References in corpus (18)
- The NumPy array: a structure for efficient numerical computation
- The Gaia mission
- A Dust-Obscured Massive Maximum-Starburst Galaxy at a Redshift of 6.34
- The Sloan Digital Sky Survey-II Supernova Survey: Technical Summary
- The Atlas3D project -- XXIX. The new look of early-type galaxies and surrounding fields disclosed by extremely deep optical images
- The structure of galactic disks: Studying late-type spiral galaxies using SDSS
- Imfit: A Fast, Flexible New Program for Astronomical Image Fitting
- Color Profiles of Spiral Galaxies: Clues on Outer-Disk Formation Scenarios
- The Burrell Schmidt Deep Virgo Survey: Tidal Debris, Galaxy Halos, and Diffuse Intracluster Light in the Virgo Cluster
- The discovery of seven extremely low surface brightness galaxies in the field of the nearby spiral galaxy M101
- The Sloan Digital Sky Survey extended point spread functions
- A unified picture of breaks and truncations in spiral galaxies from SDSS and S^{4}G imaging
- Cosmic Evolution of Stellar Disk Truncations: From z~1 to the Local Universe
- Point spread function tails and the measurements of diffuse stellar halo light around edge-on disc galaxies
- Are ultra-diffuse galaxies Milky Way-sized?
- Galaxy sizes and the galaxy-halo connection -- I: the remarkable tightness of the size distributions
- . I. Understanding galaxy sizes, associated luminosity densities, and the artificial division of the early-type galaxy population
- Disk Galaxy Scaling Relations in the SFI++: Intrinsic Scatter and Applications
Cited by in corpus (5)
- VERTICO: The Virgo Environment Traced In CO Survey
- Introducing the LBT Imaging of Galactic Halos and Tidal Structures (LIGHTS) survey. A preview of the low surface brightness Universe to be unveiled by LSST
- Galaxy Sizes Since from the Perspective of Stellar Mass Distribution within Galaxies
- Analysis of the galaxy size versus stellar mass relation
- The Fornax Deep Survey (FDS) with the VST: III. Low Surface Brightness (LSB) dwarfs and Ultra Diffuse Galaxies (UDGs) in the center of the Fornax cluster