Stochastic Noncircular Motion and Outflows Driven by Magnetic Activity in the Galactic Bulge Region
arXiv:1504.08065 · doi:10.1093/mnras/stv2188
Abstract
By performing a global magneto-hydrodynamical simulation for the Milky Way with an axisymmetric gravitational potential, we propose that spatially dependent amplification of magnetic fields possibly explains the observed noncircular motion of the gas in the Galactic center region. The radial distribution of the rotation frequency in the bulge region is not monotonic in general. The amplification of the magnetic field is enhanced in regions with stronger differential rotation, because magnetorotational instability and field-line stretching are more effective. The strength of the amplified magnetic field reaches >~ 0.5 mG, and radial flows of the gas are excited by the inhomogeneous transport of angular momentum through turbulent magnetic field that is amplified in a spatially dependent manner. In addition, the magnetic pressure-gradient force also drives radial flows in a similar manner. As a result, the simulated position-velocity diagram exhibits a time-dependent asymmetric parallelogram-shape owing to the intermittency of the magnetic turbulence; the present model provides a viable alternative to the bar-potential-driven model for the parallelogram-shape of the central molecular zone. This is a natural extension into the central few 100 pc of the magnetic activity, which is observed as molecular loops at radii from a few 100 pc to 1 kpc. Furthermore, the time-averaged net gas flow is directed outward, whereas the flows are highly time-dependent, which we discuss from a viewpoint of the outflow from the bulge.
12 pages, 13 figures, MNRAS in press
References in corpus (7)
- The Milky Way's circular velocity curve between 4 and 14 kpc from APOGEE data
- The dynamical evolution of molecular clouds near the Galactic Centre - I. Orbital structure and evolutionary timeline
- Giant Magnetized Outflows from the Centre of the Milky Way
- Gas flow models in the Milky Way embedded bars
- Large scale kinematics and dynamical modelling of the Milky Way nuclear star cluster
- Global Three-Dimensional MHD Simulations of Galactic Gaseous Disks: I. Amplification of Mean Magnetic Fields in Axisymmetric Gravitational Potential
- Detailed molecular observations toward the Double Helix Nebula
Cited by in corpus (19)
- Molecular gas kinematics within the central 250 pc of the Milky Way
- Star formation rates and efficiencies in the Galactic Centre
- Cloud-cloud collisions and triggered star formation
- A theoretical explanation for the Central Molecular Zone asymmetry
- The geometry of the gas surrounding the Central Molecular Zone: on the origin of localised molecular clouds with extreme velocity dispersions
- Cloud-cloud collisions in the common foot point of molecular loops 1 and 2 in the Galactic Center
- CHIMPS2: Survey description and CO emission in the Galactic Centre
- Magnetic field morphology and evolution in the Central Molecular Zone and its effect on gas dynamics
- The Central 300 pc of the Galaxy probed by infrared spectra of H3+ and CO: II. Expansion and morphology of the warm diffuse gas
- Evidence of a Cloud-Cloud Collision from Overshooting Gas in the Galactic Center
- Multiphase Circumnuclear Gas in a Low- Disk: Turbulence and Magnetic Field Reversals
- Spontaneous Formation of Outflows Powered by Rotating Magnetized Accretion Flows in a Galactic Center
- Magnetic Activity in the Galactic Centre Region -- Fast Downflows along Rising Magnetic Loops
- A Proper Discretization of Hydrodynamic Equations in the Cylindrical Coordinates for Astrophysical Simulations
- A Multiwavelength Study of the Sgr B Region: Contiguous Cloud-Cloud Collisions Triggering Widespread Star Formation Events?
- Radio broadband visualization of global three-dimensional magneto-hydrodynamical simulations of spiral galaxies I. Faraday rotation at 8GHz
- Discovery of a giant molecular loop in the central region of NGC 253
- Vertical flows and structures excited by magnetic activity in the Galactic center region
- Investigating Magnetic Activity in the Galactic Centre by Global MHD Simulation