Properties of Galaxies in the Disc Central Surface Brightness Gap
arXiv:1510.07127 · doi:10.1093/mnras/stv2427
Abstract
Intermediate surface brightness (ISB) galaxies are less numerous than their counterparts at high and low surface brightness (HSB and LSB). Investigating ISB characteristics from a sample from the S4G survey, complete down to M_B=-16, we find that they have intermediate stellar, gas and baryonic masses and on average as much gas as stars. They lie on the (baryonic) Tully-Fisher relation between HSBs and LSBs, although they present a higher scatter than the latter. Their stellar to baryonic mass ratios have intermediate values unlike their condensed baryonic fractions. By comparing their environments, as classified by the eigenvalues of the velocity shear tensor of local constrained simulations, ISBs have a 5-10% probability higher (smaller) to be in sheets (filaments) with respect to HSBs and LSBs. Additionally, for galaxies in filaments (with close neighbors), the mass and mu_0 are correlated at 2.5 (2) sigma more than for those in sheets. ISBs live in regions where the divergence of the velocity field is smaller than where HSBs and LSBs live, a result at more than 50% significance. ISBs may exist as an unstable transition state between LSBs and HSBs, the low flow activity environment maximally encouraging their formation. Interaction events altering the central baryon fraction could happen at a lower rate in these less dense environment, whilst in the higher density environments the LSBs are primarily satellite galaxies, whose accretion is sufficiently constrained that it fails to promote them to HSBs.
Accepted for publication in MNRAS, 11 pages, 11 figures
References in corpus (15)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- A Classical Morphological Analysis of Galaxies in the Spitzer Survey of Stellar Structure in Galaxies (S4G)
- The Evolution of Dark Matter Halo Properties in Clusters, Filaments, Sheets and Voids
- From Spitzer Galaxy Photometry to Tully-Fisher Distances
- The three dimensional skeleton: tracing the filamentary structure of the universe
- Cosmic Web and Star Formation Activity in Galaxies at z~1
- The Baryonic Tully-Fisher Relationship for SG Galaxies and the "Condensed" Baryon Fraction of Galaxies
- The high mass end of the Tully-Fisher relation
- Simulations of the Local Universe Constrained by Observational Peculiar Velocities
- The cosmic web of the Local Universe: cosmic variance, matter content and its relation to galaxy morphology
- Galaxy properties and the cosmic web in simulations
- The Near-IR Luminosity Function and Bimodal Surface Brightness Distribution of Virgo Cluster Galaxies
- Bulge-Disk Decompositions and Structural Bimodality of Ursa Major Cluster Spiral Galaxies
- The Local Group in the cosmic web
- The Effect of Environment on Milky Way-mass galaxies in a Constrained Simulation of the Local Group
Cited by in corpus (6)
- Euclid. I. Overview of the Euclid mission
- The Hestia project: simulations of the Local Group
- A Slippery Slope: Systematic Uncertainties in the Line Width Baryonic Tully-Fisher Relation
- A Comparison of the Baryonic Tully-Fisher Relation in MaNGA and IllustrisTNG
- Non-parametric decompositions of disk galaxies in SG using DiskFit
- Galaxy disc central surface brightness distribution in the optical and near-infrared bands