The observable properties of cool winds from galaxies, AGN, and star clusters -- II. 3D models for the multiphase wind of M82
arXiv:2204.05006 · doi:10.1093/mnras/stac3241
Abstract
Galactic winds are a crucial player in galaxy formation and evolution, but observations of them have proven extraordinarily difficult to interpret, leaving large uncertainties even in basic quantities such as mass outflow rates. Part of this uncertainty arises from the relatively simplistic models to which complex wind observations are often fit, which inevitably discard much of the available information. Here we present an analysis of the wind of the nearby dwarf starburst galaxy M82 using a semi-analytic model that is able to take advantage of the full three-dimensional information present in position-position-velocity data cubes measured in the Hi 21 cm line, the CO 2-1 line, and the Ha line. Our best-fitting model produces position-dependent spectra in good agreement with the observations, and shows that the total wind mass flux in the atomic and molecular phases is approx 10 M_sun yr-1 (corresponding to a mass loading factor of about 2 - 3), with less than a factor of two uncertainty; the mass flux in the warm ionised phase is more poorly constrained, and may be comparable to or smaller than this. At least over the few kpc off the plane for which we trace the outflow, it appears to be a wind escaping the galaxy, rather than a fountain that falls back. Our fits require that clouds of cool gas entrained into the wind expand only modestly, suggesting they are magnetically confined. Finally, we demonstrate that attempts to model the wind using simplifying assumptions such as instantaneous acceleration and a constant terminal wind speed can yield significantly erroneous results.
References in corpus (36)
- Cosmological Simulations of Intergalactic Medium Enrichment from Galactic Outflows
- Cool Outflows in Galaxies and their Implications
- An H-alpha Imaging Survey of Galaxies in the Local 11 Mpc Volume
- Markov Chain Monte Carlo Methods for Bayesian Data Analysis in Astronomy
- Magnetized Gas Clouds can Survive Acceleration by a Hot Wind
- The Launching of Cold Clouds by Galaxy Outflows I: Hydrodynamic Interactions with Radiative Cooling
- Dynamics of Dusty Radiation Pressure Driven Shells and Clouds: Fast Outflows from Galaxies, Star Clusters, Massive Stars, and AGN
- Iron line and diffuse hard X-ray emission from the starburst galaxy M82
- The Physical Nature of Starburst-Driven Galactic Outflows
- The Structure of Multiphase Galactic Winds
- First results from SMAUG: Characterization of Multiphase Galactic Outflows from a Suite of Local Star-Forming Galactic Disk Simulations
- Dense Molecular Gas Tracers in the Outflow of the Starburst Galaxy NGC 253
- MIGHTEE-HI: The HI emission project of the MeerKAT MIGHTEE survey
- Winds, Clumps, and Interacting Cosmic Rays in M82
- Growth and structure of multiphase gas in the cloud-crushing problem with cooling
- H-alpha emission in local galaxies: star formation, time variability and the diffuse ionized gas
- Temperature and Metallicity Gradients in the Hot Gas Outflows of M82
- A Semi-Analytical Line Transfer (SALT) model to interpret the spectra of galaxy outflows
- A Framework for Multiphase Galactic Wind Launching using TIGRESS
- Filament formation in wind-cloud interactions. II. Clouds with turbulent density, velocity, and magnetic fields
- Outflows in Star-forming Galaxies: Stacking Analyses of Resolved Winds and the Relation to Their Hosts' Properties
- Shock-multicloud interactions in galactic outflows -- II. Radiative fractal clouds and cold gas thermodynamics
- The strength and structure of the magnetic field in the galactic outflow of M82
- Densities and filling factors of the DIG in the Solar neighbourhood
- Long way to go: how outflows from large galaxies propagate through the hot halo gas
- The Launching of Cold Clouds by Galaxy Outflows III: The Influence of Magnetic Fields
- SOFIA Far Infrared Imaging Polarimetry of M82 and NGC 253: Exploring the Super-Galactic Wind
- The Launching of Cold Clouds by Galaxy Outflows. IV. Cosmic-Ray-Driven Acceleration
- Numerical Simulations of Turbulent Molecular Clouds Regulated by Radiation Feedback Forces II: Radiation-Gas Interactions and Outflows
- Cosmic rays across the star-forming galaxy sequence. I: Cosmic ray pressures and calorimetry
- Observational Constraints on the Multiphase Nature of Outflows Using Large Spectroscopic Surveys at 0
- Magnetized High Velocity Clouds in the Galactic Halo: A New Distance Constraint
- Cosmic rays across the star-forming galaxy sequence. II: Stability limits and the onset of cosmic ray-driven outflows
- Galactic fountains and outflows in star forming dwarf galaxies: ISM expulsion and chemical enrichment
- First extragalactic measurement of the turbulence driving parameter: ALMA observations of the star-forming region N159E in the Large Magellanic Cloud
- Understanding biases in measurements of molecular cloud kinematics using line emission
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- GA-NIFS: Multi-phase analysis of a star-forming galaxy at
- Direct observations of the atomic-molecular phase transition in the Milky Way's nuclear wind
- Dissecting the Mid-Infrared Heart of M83 with JWST
- Testing SALT Approximations with Numerical Radiation Transfer Code Part 1: Validity and Applicability
- Revisiting the Galactic Winds in M82 II: Development of Multiphase Outflows in Simulations
- The GECKOS Survey: Resolved, multiphase observations of mass-loading and gas density in the galactic wind of NGC 4666
- Multiphase images of a powerful supernova-driven wind in the early Universe
- Quokka-based understanding of outflows (QED) -- IV. Limitations of H as an outflow diagnostic
- Modelling the non-equilibrium chemistry of the Milky Way's cold nuclear wind