Hydrodynamic simulations of the central molecular zone with realistic Galactic potential
arXiv:1704.09006 · doi:10.3847/1538-4357/aa7061
Abstract
We present hydrodynamic simulations of gas clouds inflowing from the disk to a few hundred parsec region of the Milky Way. A gravitational potential is generated to include realistic Galactic structures by using thousands of multipole expansions that describe 6.4 million stellar particles of a self-consistent Galaxy simulation. We find that a hybrid multipole expansion model, with two different basis sets and a thick disk correction, accurately reproduces the overall structures of the Milky Way. Through non-axisymmetric Galactic structures of an elongated bar and spiral arms, gas clouds in the disk inflow to the nuclear region and form a central molecular zone (CMZ)-like nuclear ring. We find that the size of the nuclear ring evolves into ~240 pc at T~1500 Myr, regardless of the initial size. For most simulation runs, the rate of gas inflow to the nuclear region is equilibrated to ~0.02 M_sun/yr. The nuclear ring is off-centered, relative to the Galactic center, by the lopsided central mass distribution of the Galaxy model, and thus an asymmetric mass distribution of the nuclear ring arises accordingly. The vertical asymmetry of the the Galaxy model also causes the nuclear ring to be tilted along the Galactic plane. During the first ~100 Myr, the vertical frequency of the gas motion is twice that of the orbital frequency, thus the projected nuclear ring shows a twisted, infinity-like shape.
Accepted for publication in ApJ
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Cited by in corpus (16)
- Simulations of the Milky Way's central molecular zone -- I. Gas dynamics
- Effects of Gas on Formation and Evolution of Stellar Bars and Nuclear Rings in Disk Galaxies
- Age Dating the Galactic Bar with the Nuclear Stellar Disc
- Redistribution of Stars and Gas in the Star Formation Deserts of Barred Galaxies
- Star formation activity of barred spiral galaxies
- The Morpho-Kinematic Architecture of Super Star Clusters in the Center of NGC253
- Testing the Prediction of Fuzzy Dark Matter Theory in the Milky Way Center
- Star Formation in Nuclear Rings with the TIGRESS Framework
- The Life Cycle of the Central Molecular Zone. II: Distribution of atomic and molecular gas tracers
- Three-Dimensional Structure of the Central Molecular Zone
- The 200-pc Molecular Cylinder in the Galactic Centre
- Unveiling the origins of galactic bars: insights from barred and unbarred galaxies
- Modeling Turbulence in Galactic Centers
- Nuclear starburst activity induced by elongated bulges in spiral galaxies
- Improving Black Hole Accretion Treatment in Hydrodynamical Simulations
- Effect of Bars on Evolution of SDSS Spiral Galaxies