English

Galaxy Zoo: Finding offset discs and bars in SDSS galaxies

Astrophysics of Galaxies 2017-06-21 v1

Abstract

We use multi-wavelength SDSS images and Galaxy Zoo morphologies to identify a sample of \sim270270 late-type galaxies with an off-centre bar. We measure offsets in the range 0.2-2.5 kpc between the photometric centres of the stellar disc and stellar bar. The measured offsets correlate with global asymmetries of the galaxies, with those with largest offsets showing higher lopsidedness. These findings are in good agreement with predictions from simulations of dwarf-dwarf tidal interactions producing off-centre bars. We find that the majority of galaxies with off-centre bars are of Magellanic type, with a median mass of 109.6M10^{9.6} M_{\odot}, and 91% of them having M<3×1010MM_{\star}<3\times10^{10} M_{\odot}, the characteristic mass at which galaxies start having higher central concentrations attributed to the presence of bulges. We conduct a search for companions to test the hypothesis of tidal interactions, but find that a similar fraction of galaxies with offset bars have companions within 100 kpc as galaxies with centred bars. Although this may be due to the incompleteness of the SDSS spectroscopic survey at the faint end, alternative scenarios that give rise to offset bars such as interactions with dark companions or the effect of lopsided halo potentials should be considered. Future observations are needed to confirm possible low mass companion candidates and to determine the shape of the dark matter halo, in order to find the explanation for the off-centre bars in these galaxies.

Keywords

Cite

@article{arxiv.1705.00007,
  title  = {Galaxy Zoo: Finding offset discs and bars in SDSS galaxies},
  author = {Sandor J. Kruk and Chris J. Lintott and Brooke D. Simmons and Steven P. Bamford and Carolin N. Cardamone and Lucy Fortson and Ross E. Hart and Boris Häußler and Karen L. Masters and Robert C. Nichol and Kevin Schawinski and Rebecca J. Smethurst},
  journal= {arXiv preprint arXiv:1705.00007},
  year   = {2017}
}

Comments

12 pages, 9 figures, accepted for publication in MNRAS

R2 v1 2026-06-22T19:31:17.176Z