Effect of dark matter halo on global spiral modes in galaxies
arXiv:1511.05536 · doi:10.1093/mnras/stv2652
Abstract
Low surface brightness (LSB) galaxies form a major class of galaxies, and are characterized by low disc surface density and low star formation rate. These are known to be dominated by dark matter halo from the innermost regions. Here we study the role of dark matter halo on the grand-design, , spiral modes in a galactic disc by carrying out a global mode analysis in the WKB approximation. The Bohr-Sommerfeld quantization rule is used to determine how many discrete global spiral modes are permitted. First a typical superthin LSB galaxy, UGC 7321 is studied by taking only the galactic disc, modelled as fluid; and then the disc embedded in a dark matter halo. We find that both cases permit the existence of global spiral modes. This is in contrast to earlier results where the inclusion of dark matter halo was shown to nearly fully suppress local, swing-amplified spiral features. Although technically global modes are permitted in the fluid model as shown here, we argue that due to lack of tidal interactions, these are not triggered in LSB galaxies. For comparison, we carried out a similar analysis for the Galaxy, for which the dark matter halo does not dominate in the inner regions. We show that here too the dark matter halo has little effect, hence the disc embedded in a halo is also able to support global modes. The derived pattern speed of the global mode agrees fairly well with the observed value for the Galaxy.
9 pages, 4 figures, 3 tables, accepted for publication in MNRAS
References in corpus (2)
Cited by in corpus (5)
- Flaring stellar disk in the low surface brightness galaxy UGC 7321
- Outskirts of Nearby Disk Galaxies: Star Formation and Stellar Populations
- Low-mass disc galaxies and the issue of stability: MOND vs dark matter
- Gravitational potential energy of a multi-component galactic disk
- Effect of dark matter halo on global spiral modes in a collisionless galactic disc