Disc instability and bar formation: view from the IllustrisTNG simulations
arXiv:2203.07734 · doi:10.1093/mnras/stac1413
Abstract
We make use of z = 0 samples of strongly barred and unbarred disc galaxies from the TNG100 and TNG50 cosmological hydrodynamical simulations to assess the performance of the simple disc instability criterion proposed by Efstathiou, Lake & Negroponte (1982) (ELN-criterion). We find that strongly barred galaxies generally assemble earlier, are more star-dominated in their central regions, and have more massive and more compact discs than unbarred galaxies. The ELN-criterion successfully identifies ~75% and ~80% of the strongly barred and the unbarred galaxies, respectively. Strongly barred galaxies that the criterion fails to identify tend to have more extended discs, higher spin values and bars that assembled later than is typical for the bulk of the barred population. The bars in many of these cases appear to be produced by an interaction with a close neighbour (i.e. to be externally triggered) rather than to result from secular growth in the disc. On the other hand, we find that unbarred galaxies misclassified as barred by the ELN-criterion typically have stellar discs similar to those of barred galaxies, although more extended in the vertical direction and less star-dominated in their central regions, possibly reflecting later formation times. In addition, the bulge component of these galaxies is significantly more prominent at early times than in the strongly barred sample. Thus, the ELN-criterion robustly identifies secular bar instabilities in most simulated disc galaxies, but additional environmental criteria are needed to account for interaction-induced bar formation.
15 pages, 12 Figures, Accepted by MNRAS
References in corpus (27)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- Properties of galaxies reproduced by a hydrodynamic simulation
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- Simba: Cosmological Simulations with Black Hole Growth and Feedback
- The Auriga Project: the properties and formation mechanisms of disc galaxies across cosmic time
- Structural Properties of Pseudo-Bulges, Classical Bulges and Elliptical Galaxies: an SDSS Perspective
- A Near-Infrared Study of 2MASS Bars in Local Galaxies: An Anchor for High Redshift Studies
- Assembly bias in the clustering of dark matter haloes
- The population of barred galaxies in the local universe I. Detection and characterisation of bars
- Bars in Disk-Dominated and Bulge-Dominated Galaxies at z~0: New Insights from ~3600 SDSS Galaxies
- Galactic Angular Momentum in the Illustris Simulation: Feedback and the Hubble Sequence
- Bar-driven evolution and quenching of spiral galaxies in cosmological simulations
- Fast galaxy bars continue to challenge standard cosmology
- Disc instabilities and semi-analytic modelling of galaxy formation
- Disk Evolution and Bar Triggering Driven by Interactions with Dark Matter Substructure
- A Study of the Effect of Bulges on Bar Formation in Disk galaxies
- The stability of stellar disks in Milky-Way sized dark matter halos
- SDSS-IV MaNGA: The link between bars and the early cessation of star formation in spiral galaxies
- Stellar, gas and dark matter content of barred galaxies
- Barred galaxies in the Illustris-1 and TNG100 simulations
- The build-up of pseudobulges in a hierarchical universe
- Dark-ages Reionization and Galaxy Formation Simulation -- XVII. Sizes, angular momenta and morphologies of high redshift galaxies
- Dark matter halos of barred disk galaxies
- Halpha3: an Halpha imaging survey of HI selected galaxies from ALFALFA. V: The Coma Supercluster survey completion
- Testing a theoretical prediction for bar formation in galaxies with bulges
- Numerical simulations of bar formation in the Local Group