The Mass Inflow and Outflow Rates of the Milky Way
arXiv:1909.05561 · doi:10.3847/1538-4357/ab40ad
Abstract
We present new calculations of the mass inflow and outflow rates around the Milky Way, derived from a catalog of ultraviolet metal-line high velocity clouds (HVCs). These calculations are conducted by transforming the HVC velocities into the Galactic Standard of Rest (GSR) reference frame, identifying inflowing (v_GSR < 0 km/s) and outflowing (v_GSR > 0 km/s) populations, and using observational constraints on the distance, metallicity, dust content, covering fractions, and total hydrogen column density of each population. After removing HVCs associated with the Magellanic Stream and the Fermi Bubbles, we find inflow and outflow rates in cool (T~10^4 K) ionized gas of dM_in/dt >~ 0.53+/-0.17 (d/12 kpc) (Z/0.2 Z_sun)^-1 M_sun/yr and dM_out/dt >~ 0.16+/-0.06 (d/12 kpc) (Z/0.5 Z_sun)^-1 M_sun/yr. The excess of inflowing over outflowing gas suggests that the Milky Way is currently in an inflow-dominated phase, but the presence of substantial mass flux in both directions supports a Galactic fountain model, in which gas is constantly recycled between the disk and the halo. We also find that the metal flux in both directions (in and out) is indistinguishable. By comparing the outflow rate to the Galactic star formation rate, we present the first estimate of the mass loading factor (etc_HVC) of the disk-wide Milky Way wind, finding eta_HVC >~ 0.10+/-0.06 (d/12 kpc) (Z/0.5 Z_sun)^-1. Including the contributions from low- and intermediate-velocity clouds and from hot gas would increase these inflow and outflow estimates.
Accepted for publication in ApJ, 10 pages, 1 figure, 3 tables
References in corpus (15)
- The Circumgalactic Medium
- A Unified Representation of Gas-Phase Element Depletions in the Interstellar Medium
- The present-day star formation rate of the Milky-Way determined from Spitzer detected young stellar objects
- The Origin of the Magellanic Stream and Its Leading Arm
- The COS/UVES Absorption Survey of the Magellanic Stream. III: Ionization, Total Mass, and Inflow Rate onto the Milky Way
- An Accurate Distance to High-Velocity Cloud Complex C
- Probing the Fermi Bubbles in Ultraviolet Absorption: A Spectroscopic Signature of the Milky Way's Biconical Nuclear Outflow
- A Survey of O VI, C III, and H I in Highly Ionized High-Velocity Clouds
- Nuclear Outflow of the Milky Way: Studying the Kinematics and Spatial Extent of the Northern Fermi Bubble
- SDSS-IV MaNGA: What Shapes The Distribution Of Metals In Galaxies? Exploring The Roles Of The Local Gas Fraction And Escape Velocity
- Galactic fountains and their connection with high and intermediate velocity clouds
- The High Velocity Gas toward Messier 5: Tracing Feedback Flows in the Inner Galaxy
- Circumgalactic Pressure Profiles Indicate Precipitation-Limited Atmospheres for
- Dust-to-Gas Ratios of the GALFA-HI Compact Cloud Catalog
- The First Distance Constraint on the Renegade High Velocity Cloud Complex WD
Cited by in corpus (38)
- Cool Outflows in Galaxies and their Implications
- The Impact of Cosmic Rays on Thermal Instability in the Circumgalactic Medium
- Large Metallicity Variations in the Galactic Interstellar Medium
- Intermediate- and high-velocity clouds in the Milky Way II: evidence for a Galactic fountain with collimated outflows and diffuse inflows
- Cloudy with A Chance of Rain: Accretion Braking of Cold Clouds
- Non-interacting black hole binaries with Gaia and LAMOST
- Inspiraling streams of enriched gas observed around a massive galaxy 11 billion years ago
- Discovery of the Magellanic Stellar Stream Out to 100 Kiloparsecs
- Figuring Out Gas & Galaxies in Enzo (FOGGIE). III. The Mocky Way: Investigating Biases in Observing the Milky Way's Circumgalactic Medium
- The energy distribution of the first supernovae
- Better Together: The Complex Interplay Between Radiative Cooling and Magnetic Draping
- How Cosmic Rays Mediate the Evolution of the Interstellar Medium
- Bending waves excited by irregular gas inflow along warps
- A magnetised Galactic halo from inner Galaxy outflows
- The HI Column Density Distribution of the Galactic Disk and Halo
- Magnetic field draping around clumpy high-velocity clouds in galactic halo
- MUSE-ALMA Halos XI: Gas flows in the circumgalactic medium
- The role of the halo magnetic field on accretion through High-Velocity Clouds
- Detection of Dust in High-Velocity Cloud Complex C -- Enriched Gas Accreting onto the Milky Way
- Spatially Resolved Gas Flows Around the Milky Way
- Cosmological gas accretion history onto the stellar discs of Milky Way-like galaxies in the Auriga simulations -- (I) Temporal dependency
- DIISC-I: The Discovery of Kinematically Anomalous HI Clouds in M 100
- Chemical diversity of gas in distant galaxies: The metal and dust enrichment and variations within absorbing galaxies
- DIISC-II: Unveiling the Connections between Star Formation and ISM in the Extended Ultraviolet Disk of NGC 3344
- Spatially Resolved Circumgalactic Medium around a Star-Forming Galaxy Driving a Galactic Outflow at
- The dynamical impact of cosmic rays in the Rhea magnetohydrodynamics simulations
- The Warm Gas in the MW: the Kinematical Model of C IV and its Connection with Si IV
- Feeding the Dead: Neutral Gas Inflow in a Long-Quenched Ancient Massive Galaxy at Observed with JWST/NIRSpec
- Reconstructing the Milky Way chemical map with Galactic Chemical Evolution tool OMEGA+ from SDSS-MWM
- Kinematics of the Local Group gas and galaxies in the Hestia simulations
- A path towards constraining the evolution of the interstellar medium and outflows in the Milky Way using APOGEE
- The dawn is quiet here: Rise in [/Fe] is a signature of massive gas accretion that fueled proto-Milky Way
- Investigating chemical variations between interstellar gas clouds in the Solar neighbourhood
- The imprint of magnetic fields on absorption spectra from circumgalactic wind-cloud systems
- The Observed O VI is Just the Tip of the Iceberg: Estimating the Hidden Material in Circumgalactic and Intergalactic Clouds
- Neural Infalling Cloud Equations (NICE): Increasing the Efficacy of Subgrid Models and Scientific Equation Discovery using Neural ODEs and Symbolic Regression
- Modeling the Accretion of High-Velocity Clouds from a Rotating Halo
- Simulating High-Velocity Clouds in the Observational Plane: An Initial Study with the Smith Cloud