The roles of radiation and ram pressure in driving galactic winds
arXiv:1112.3447 · doi:10.1088/0004-637X/750/1/55
Abstract
We study gaseous outflows from disk galaxies driven by the combined effects of ram pressure on cold gas clouds and radiation pressure on dust grains. Taking into account the gravity due to disk, bulge and dark matter halo, and assuming continuous star formation in the disk, we show that radiation or ram pressure alone is not sufficient to drive escaping winds from disk galaxies, and that both processes contribute. We show that in the parameter space of star formation rate (SFR) and rotation speed of galaxies, the wind speed in galaxies with rotation speed km s and SFR M yr, has a larger contribution from ram pressure, and that in high mass galaxies with large SFR, radiation from the disk has a greater role in driving galactic winds. The ratio of wind speed to circular speed can be approximated as . We show that this conclusion is borne out by observations of galactic winds at low and high redshift and also of circumgalactic gas. We also estimate the mass loading factors under the combined effect of ram and radiation pressure, and show that the ratio of mass loss rate to SFR scales roughly as , where is the gas column density in the disk.
Accepted for publication in ApJ
References in corpus (3)
Cited by in corpus (31)
- Galactic winds driven by cosmic-ray streaming
- Angular Momentum Acquisition in Galaxy Halos
- The Properties and Prevalence of Galactic Outflows at z = 1 in the Extended Groth Strip
- Constraints on Hydrodynamical Subgrid Models from Quasar Absorption Line Studies of the Simulated Circumgalactic Medium
- The Role of Cosmic Ray Transport in Shaping the Simulated Circumgalactic Medium
- Entrainment in Trouble: Cool Cloud Acceleration and Destruction in Hot Supernova-Driven Galactic Winds
- Kiloparsec Scale Properties of Star-Formation Driven Outflows at z~2.3 in the SINS/zC-SINF AO Survey
- Turbulent Gas in Lensed Planck-selected Starbursts at redshifts 1-3.5
- The Impact of Cosmic Rays on Thermal Instability in the Circumgalactic Medium
- Bulge Formation via Mergers in Cosmological Simulations
- An Extreme Metallicity, Large-Scale Outflow from a Star-Forming Galaxy at z ~ 0.4
- Dancing in the Dark: Uncertainty in ultra-faint dwarf galaxy predictions from cosmological simulations
- Galactic Winds in Cosmological Simulations of the Circumgalactic Medium
- Fast Winds Drive Slow Shells: A Model for the Circumgalactic Medium as Galactic Wind-Driven Bubbles
- Supernovae and AGN driven galactic outflows
- The Molecular Wind in the Nearest Seyfert Galaxy Circinus Revealed by ALMA
- Galactic outflow and diffuse gas properties at z>=1 using different baryonic feedback models
- On the impact of radiation pressure on the dynamics and inner structure of dusty wind-driven shells
- Superbubble breakout and galactic winds from disk galaxies
- The obstructed jet in Mrk 231
- Extra-planar X-ray emission from disc-wide outflows in spiral galaxies
- The nearby extreme accretion and feedback system PDS 456: finding a complex radio-emitting nucleus
- The MOSDEF-LRIS Survey: Connection between Galactic-scale Outflows and the Properties of ~2 star-forming Galaxies
- Role of cosmic rays in the early stages of galactic outflows
- Ca II Absorbers in the Sloan Digital Sky Survey: Statistics
- Interaction of galactic wind with halo gas and the origin of multiphase extraplanar material
- Charge exchange emission and cold clumps in multi-phase galactic outflows
- Transonic galactic outflows in a dark matter halo with a central black hole and its application to the Sombrero galaxy
- The Slow Flow Model of Dust Efflux in Local Star-Forming Galaxies
- Gravitational and mass distribution effects on stationary superwinds
- The AURORA Survey: Tracing Galactic Outflows at with JWST/NIRSpec NUV Absorption Lines