The Carnegie-Irvine Galaxy Survey. V. Statistical study of bars and buckled bars
arXiv:1707.03570 · doi:10.3847/1538-4357/aa7fba
Abstract
Simulations have shown that bars are subject to a vertical buckling instability that transforms thin bars into boxy or peanut-shaped structures, but the physical conditions necessary for buckling to occur are not fully understood. We use the large sample of local disk galaxies in the Carnegie-Irvine Galaxy Survey to examine the incidence of bars and buckled bars across the Hubble sequence. Depending on the disk inclination angle (), a buckled bar reveals itself as either a boxy/peanut-shaped bulge (at high ) or as a barlens structure (at low ). We visually identify bars, boxy/peanut-shaped bulges, and barlenses, and examine the dependence of bar and buckled bar fractions on host galaxy properties, including Hubble type, stellar mass, color, and gas mass fraction. We find that the barred and unbarred disks show similar distributions in these physical parameters. The bar fraction is higher (70\%--80\%) in late-type disks with low stellar mass () and high gas mass ratio. In contrast, the buckled bar fraction increases to 80\% toward massive and early-type disks (), and decreases with higher gas mass ratio. These results suggest that bars are more difficult to grow in massive disks that are dynamically hotter than low-mass disks. However, once a bar forms, it can easily buckle in the massive disks, where a deeper potential can sustain the vertical resonant orbits. We also find a probable buckling bar candidate (ESO 506G004) that could provide further clues to understand the timescale of the buckling process.
9 pages, 7 figures, 2 tables. Accepted for publication in The Astrophysical Journal
References in corpus (6)
- A Near-Infrared Study of 2MASS Bars in Local Galaxies: An Anchor for High Redshift Studies
- 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
- Milky Way mass galaxies with X-shaped bulges are not rare in the local Universe
- Barlenses and X-shape features compared: different manifestations of Boxy/Peanut bulges
- Caught in the Act: Direct Detection of Galactic Bars in the Buckling Phase
Cited by in corpus (22)
- Barred Galaxies in the IllustrisTNG Simulation
- Bar Fraction in Early- and Late-type Spirals
- Revealing the cosmic evolution of boxy/peanut-shaped bulges from HST COSMOS and SDSS
- The Carnegie-Irvine Galaxy Survey. IX. Classification of Bulge Types and Statistical Properties of Pseudo Bulges
- The Diverse Morphology, Stellar Population, and Black Hole Scaling Relations of the Host Galaxies of Nearby Quasars
- Composite Bulges -- II. Classical Bulges and Nuclear Discs in Barred Galaxies: The Contrasting Cases of NGC 4608 and NGC 4643
- Is the late buckling stage inevitable in the bar life?
- Bar Classification based on the Potential Map
- Buckling instability in tidally induced galactic bars
- B/PS bulges in DESI Legacy edge-on galaxies I: Sample building
- Buckling bars in nearly face-on galaxies observed with MaNGA
- The Profiles of Bars in Spiral Galaxies
- The Carnegie-Irvine Galaxy Survey. X. Bulges in Stellar Mass-based Scaling Relations
- IllustrisTNG Insights: Factors Affecting the Presence of Bars in Disk Galaxies
- First direct identification of the barlens vertical structure in galaxy models
- Testing for relics of past strong buckling events in edge-on galaxies: Simulation predictions and data from SG
- On the Correlation Between Atomic Gas and Bars in Galaxies
- Dynamical analysis of Maclaurin disk with velocity dispersion and its influence on bar formation
- Orbit-based structural decomposition and stellar population recovery for edge-on barred galaxies
- Influence of Barlens on the Bulge Parameters in the 2D Image Decomposition
- Bar Evolution in Edge-on Galaxies: A Demographic Study of Boxy/Peanut Bulges
- Age distribution of stars in boxy/peanut/X-shaped bulges formed without bar buckling