Seeding the formation of cold gaseous clouds in Milky Way size halos
arXiv:0905.2186 · doi:10.1088/0004-637X/700/1/L1
Abstract
We use one of the highest resolution cosmological SPH simulations to date to demonstrate that cold gaseous clouds form around Milky Way size galaxies. We further explore mechanisms responsible for their formation and show that a large fraction of clouds originate as a consequence of late-time filamentary "cold mode" accretion. Here, filaments that are still colder and denser than the surrounding halo gas, are not able to connect directly to galaxies, as they do at high redshift, but are instead susceptible to the combined action of cooling and Rayleigh-Taylor instabilities at intermediate radii within the halo leading to the production of cold, dense pressure-confined clouds, without an associated dark matter component. This process is aided through the compression of the incoming filaments by the hot halo gas and expanding shocks during the halo buildup. Our mechanism directly seeds clouds from gas with substantial local overdensity, unlike in previous models, and provides a channel for the origin of cloud complexes. These clouds can later "rain" onto galaxies, delivering fuel for star formation. Owing to the relatively large cross section of filaments and the net angular momentum carried by the gas, the clouds will be distributed in a modestly flattened region around a galaxy.
5 pages, 3 figures, accepted to ApJL, (minor changes form previous version)
References in corpus (8)
- Bimodal gas accretion in the Horizon-MareNostrum galaxy formation simulation
- Accretion of gas onto nearby spiral galaxies
- Distances to Galactic high-velocity clouds. I. Cohen Stream, complex GCP, cloud g1
- An Accurate Distance to High-Velocity Cloud Complex C
- Where are the ``Missing'' Galactic Baryons?
- Ongoing Galactic Accretion: Simulations and Observations of Condensed Gas in Hot Halos
- Potential Condensed Fuel for the Milky Way
- On the origin of anomalous velocity clouds in the Milky Way
Cited by in corpus (37)
- The Circumgalactic Medium
- Moving mesh cosmology: tracing cosmological gas accretion
- Characterizing the Circumgalactic Medium of Nearby Galaxies with HST/COS and HST/STIS Absorption-Line Spectroscopy
- Neutral hydrogen in galaxy halos at the peak of the cosmic star formation history
- The growth of dark matter halos: evidence for significant smooth accretion
- Hot gas in massive halos drives both mass quenching and environment quenching
- The REQUIEM Survey I: A Search for Extended Ly-Alpha Nebular Emission Around 31 z>5.7 Quasars
- Hot-mode accretion and the physics of thin-disk galaxy formation
- What Causes The Formation of Disks and End of Bursty Star Formation?
- Hiding in plain sight: An abundance of compact massive spheroids in the local Universe
- EVLA Observations of Galactic Supernova Remnants: Wide-field Continuum and Spectral-index Imaging
- Observing the End of Cold Flow Accretion using Halo Absorption Systems
- The Fates of the Circumgalactic Medium in the FIRE Simulations
- The Cosmic Evolution of the Metallicity Distribution of Ionized Gas Traced by Lyman Limit Systems
- The Properties of the Circumgalactic Medium in Red and Blue Galaxies: Results from the COS-GASS+COS-Halos Surveys
- The Slow Death (or Rebirth?) of Extended Star Formation in z~0.1 Green Valley Early-Type Galaxies
- Gas infall and radial transport in cosmological simulations of Milky Way-mass disks
- The Circumgalactic Medium of Milky Way-like Galaxies in the TNG50 Simulation -- I: Halo Gas Properties and the Role of SMBH Feedback
- Multiphase gas in the circumgalactic medium: relative role of and density fluctuations
- The New Galaxy Evolution Paradigm Revealed by the Herschel Surveys
- Gaseous infall triggering starbursts in simulated dwarf galaxies
- Ly Blobs from Cold Streams Undergoing Kelvin-Helmholtz Instabilities
- The role of gas infall in the evolution of disc galaxies
- Sussing Merger Trees : The Impact of Halo Merger Trees on Galaxy Properties in a Semi-Analytic Model
- In search of cool flow accretion onto galaxies where does the disk gas end?
- The impact of cosmic rays on dynamical balance and disk-halo interaction in Lstar disk galaxies
- Virial shocks are suppressed in cosmic ray-dominated galaxy halos
- Aging of galaxies along the morphological sequence, marked by bulge growth and disk quenching
- Evidence for a Rotational Component in the Circumgalactic Medium of Nearby Galaxies
- Modeling Photoionized Turbulent Material in the Circumgalactic Medium II: Effect of Turbulence within a Stratified Medium
- The Void in the Sculptor Group Spiral Galaxy NGC 247
- Exploring Hydrodynamic Instabilities along the Infalling High-Velocity Cloud Complex A
- On the Origin of High-velocity Clouds in the Galaxy
- Zooming in on the Circumgalactic Medium with GIBLE: Tracing the Origin and Evolution of Cold Clouds
- A pilot study using deep infrared imaging to constrain the star formation history of the XUV stellar populations in NGC 4625
- The outskirts of M33: Tidally induced distortions versus signatures of gas accretion
- Tracing the cosmological origin of gas that fuels in situ star formation in TNG50 galaxies