Eventful Evolution of Giant Molecular Clouds in Dynamically Evolving Spiral Arms
arXiv:1609.00097 · doi:10.1093/mnras/stw2378
Abstract
The formation and evolution of giant molecular clouds (GMCs) in spiral galaxies have been investigated in the traditional framework of the combined quasi-stationary density wave and galactic shock model. However, our understanding of the dynamics of spiral arms is changing from the traditional spiral model to a dynamically evolving spiral model. In this study, we investigate the structure and evolution of GMCs in a dynamically evolving spiral arm using a three-dimensional N-body/hydrodynamic simulation of a barred spiral galaxy at parsec-scale resolution. This simulation incorporated self-gravity, molecular hydrogen formation, radiative cooling, heating due to interstellar far-ultraviolet radiation, and stellar feedback by both HII regions and Type-II supernovae. In contrast to a simple expectation based on the traditional spiral model, the GMCs exhibited no systematic evolutionary sequence across the spiral arm. Our simulation showed that the GMCs behaved as highly dynamic objects with eventful lives involving collisional build-up, collision-induced star formation, and destruction via stellar feedback. The GMC lifetimes were predicted to be short, only a few tens of millions years. We also found that, at least at the resolutions and with the feedback models used in this study, most of the GMCs without HII regions were collapsing, but half of the GMCs with HII regions were expanding owing to the HII-region feedback from stars within them. Our results support the dynamic and feedback-regulated GMC evolution scenario. Although the simulated GMCs were converging rather than virial equilibrium, they followed the observed scaling relationship well. We also analysed the effects of galactic tides and external pressure on GMC evolution and suggested that GMCs cannot be regarded as isolated systems since their evolution in disc galaxies is complicated because of these environmental effects.
19 pages, 16 figures. Accepted for publication in MNRAS
References in corpus (35)
- Slow Star Formation in Dense Gas: Evidence and Implications
- Simulating the formation of molecular clouds. I. Slow formation by gravitational collapse from static initial conditions
- Star Formation in Disk Galaxies. I. Formation and Evolution of Giant Molecular Clouds via Gravitational Instability and Cloud Collisions
- Dawes Review 4: Spiral Structures in Disc Galaxies
- Environmental Dependence of the Kennicutt-Schmidt Relation in Galaxies
- On the Rapid Collapse and Evolution of Molecular Clouds
- Dynamically Driven Evolution of the Interstellar Medium in M51
- Do cloud-cloud collisions trigger high-mass star formation? I. Small cloud collisions
- Molecular clouds towards RCW 49 and Westerlund 2; Evidence for cluster formation triggered by cloud-cloud collision
- Formation of Spiral-Arm Spurs and Bound Clouds in Vertically Stratified Galactic Gas Disks
- GMC formation by agglomeration and self gravity
- Six Myths on the Virial Theorem for Interstellar Clouds
- The frequency and nature of `cloud-cloud collisions' in galaxies
- The Blueshifting and Baldwin effects for the [OIII] 5007 Emission Line in Type 1 Active Galactic Nuclei
- Spurs and feathering in spiral galaxies
- The origin of large peculiar motions of star-forming regions and spiral structures of our Galaxy
- Initial conditions for disc galaxies
- Incorporating the molecular gas phase in galaxy-size numerical simulations: first applications in dwarf galaxies
- The impact of radio feedback from active galactic nuclei in cosmological simulations: Formation of disk galaxies
- On the galaxy spiral arms' nature as revealed by rotation frequencies
- Simulations of spiral galaxies with an active potential: molecular cloud formation and gas dynamics
- Gas and Stellar Motions and Observational Signatures of Co-Rotating Spiral Arms
- Instabilities of Spiral Shocks -- II. A quasi-steady State in the multi-phase inhomogeneous ISM
- Star formation efficiency in the Barred Spiral Galaxy NGC 4303
- The Interstellar Medium and star formation on kpc size scales
- The morphology of the Milky Way - II. Reconstructing CO maps from disc galaxies with live stellar distributions
- Wide-field 12CO (J = 1-0) Imaging of the Nearby Barred Galaxy M83 with NMA and Nobeyema 45-m telescope: Molecular Gas Kinematics and Star Formation Along the Bar
- Radial distributions of arm-gas offsets as an observational test of spiral theories
- The variation in molecular gas depletion time among nearby galaxies: II the impact of galaxy internal structures
- Deep Near-Infrared Imaging af an Embedded Cluster in the Extreme Outer Galaxy: Census of Supernovae Triggered Star Formation
- On the gravitational content of molecular clouds and their cores
- Formation of young massive clusters from turbulent molecular clouds
- CO Multi-line Imaging of Nearby Galaxies (COMING): I. Physical properties of molecular gas in the barred spiral galaxy NGC 2903
- Fragmentation and Kinematics of dense molecular cores in the filamentary infrared-dark cloud G011.11-0.12
- Photoionising feedback and the star formation rates in galaxies
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- Local Simulations of Spiral Galaxies with the TIGRESS Framework: I. Star Formation and Arm Spurs/Feathers
- The evolution of Giant Molecular Filaments
- How do different spiral arm models impact the ISM and GMC population?
- Photoionising feedback in spiral arm molecular clouds
- Young stars as tracers of a barred-spiral Milky Way
- Statistics on 24 spiral galaxies having different observed arm locations using different arm tracers
- Kennicutt-Schmidt relation variety and star-forming cloud fraction
- Imprints of Zero-Age Velocity Dispersions and Dynamical Heating on the Age-Velocity dispersion Relation
- CO Multi-line Imaging of Nearby Galaxies (COMING). X. Physical conditions of molecular gas and the local SFR-Mass relation
- A Dynamic Galaxy: Stellar Age Patterns Across the Disk of M101