English

Tidally induced warps of spiral galaxies in IllustrisTNG

Astrophysics of Galaxies 2020-09-02 v1

Abstract

Warps are common features in both stellar and gaseous disks of nearby spiral galaxies with the latter usually easier to detect. Several theories have been proposed in the literature to explain their formation and prevalence, including tidal interactions with external galaxies. Observational correlations also suggest the importance of tides for warp formation. Here, we use the TNG100 run from the magnetohydrodynamical cosmological simulation suite IllustrisTNG to investigate the connection between interactions and the formation of gas warps. We find that in the sample of well-resolved gas-rich spiral galaxies (1010M/M101110^{10}\lesssim\mathrm{M_{*}/M_{\odot}}\lesssim10^{11} at z=0z=0) from the simulation TNG100-1, about 16%16\% possess the characteristic S-shaped warp. Around one third of these objects have their vertical morphology induced by interactions with other galaxies. Half of these interactions end with the perturber absorbed by the host. Warps formed in interactions are more asymmetrical than the remaining sample, however after the interaction the asymmetry decreases with time. We find that warps induced by interactions survive on average for <1<1 Gyr. The angle between the orbital angular momentum of the perturber and the angular momentum of the host's disk that most likely leads to warp formation is around 45 degrees. While our main goal is to investigate tidally induced warps, we find that during interactions in addition to tides, new gas that is accreted from infalling satellites also can contribute to warp formation.

Keywords

Cite

@article{arxiv.2002.07022,
  title  = {Tidally induced warps of spiral galaxies in IllustrisTNG},
  author = {Marcin Semczuk and Ewa L. Lokas and Elena D'Onghia and E. Athanassoula and Victor P. Debattista and Lars Hernquist},
  journal= {arXiv preprint arXiv:2002.07022},
  year   = {2020}
}

Comments

13 pages, 11 figures, submitted to MNRAS