The global stability of M33: still a puzzle
arXiv:1902.07222 · doi:10.1093/mnras/stz1145
Abstract
The inner disc of the local group galaxy M33 appears to be in settled rotational balance, and near IR images reveal a mild, large-scale, two-arm spiral pattern with no strong bar. We have constructed N-body models that match all the extensive observational data on the kinematics and surface density of stars and gas in the inner part of M33. We find that currently favoured models are unstable to the formation of a strong bar of semi-major axis 2 < a_B < 3 kpc within 1 Gyr, which changes the dynamical properties of the models to become inconsistent with the current, apparently well-settled, state. The formation of a bar is unaffected by how the gas component is modelled, by increasing the mass of the nuclear star cluster, or by making the dark matter halo counter-rotate, but it can be prevented by either reducing the mass-to-light ratio of the stars to Upsilon_V ~ 0.6 or Upsilon_K ~ 0.23 in solar units or by increasing the random motions of the stars. Also a shorter and weaker bar results when the halo is rigid and unresponsive. However, all three near-stable models support multi-arm spirals, and not the observed large-scale bi-symmetric spiral. A two-arm spiral pattern could perhaps be tidally induced, but such a model would require an implausibly low mass disc to avoid a bar and there is no visible culprit. Thus the survival of the current state of this exceptionally well-studied galaxy is not yet understood. We also suspect that many other unbarred galaxies present a similar puzzle.
15 pages, 8 figures, to appear in MNRAS. A nymber of revisions from v1
References in corpus (14)
- Ultralight scalars as cosmological dark matter
- Cosmic Structure as the Quantum Interference of a Coherent Dark Wave
- Understanding the Core-Halo Relation of Quantum Wave Dark Matter, DM, from 3D Simulations
- Dynamics of Barred Galaxies
- A Near-Infrared Study of 2MASS Bars in Local Galaxies: An Anchor for High Redshift Studies
- Axion dark matter, solitons, and the cusp-core problem
- Galaxy Zoo: comparing the demographics of spiral arm number and a new method for correcting redshift bias
- Evolution of spiral galaxies in modified gravity
- Phantom of RAMSES (POR): A new Milgromian dynamics N-body code
- Dynamical signatures of a LCDM-halo and the distribution of the baryons in M33
- Bar-Halo Friction in Galaxies III: Halo Density Changes
- Bar imprints on the inner gas kinematics of M33
- GALAXY package for N-body simulation
- The degeneracy of M33 mass modelling and its physical implications
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- Barred spiral galaxies in modified gravity theories
- The M31/M33 tidal interaction: A hydrodynamic simulation of the extended gas distribution
- Barless flocculent galaxies: a dynamic puzzle