Ram pressure stripping of the multiphase ISM: a detailed view from TIGRESS simulations
arXiv:2207.05263 · doi:10.3847/1538-4357/ac82ba
Abstract
Ram pressure stripping (RPS) is a process that removes the interstellar medium (ISM) quickly, playing a vital role in galaxy evolution. Previous RPS studies have treated the ISM as single-phase or lack the resolution and physical processes to properly capture the full multiphase ISM. To improve this simplification, we introduce an inflowing, hot intracluster medium (ICM) into a self-consistently modeled ISM in a local patch of star-forming galactic disks using the TIGRESS framework. Our simulations reveal that the workings of RPS are not only direct acceleration of the ISM by ICM ram pressure but also mixing-driven momentum transfer involving significant phase transition and radiative cooling. The hot ICM passes through the low-density channels of the porous, multiphase ISM, shreds the cool ISM, and creates mixing layers. The ICM momentum is transferred through the mixing layers while populating the intermediate temperature gas and radiating thermal energy away. The mixed gas extends beyond galactic disks and forms stripped tails that cool back unless the ICM fluxes are large enough to prevent cooling until they escape the simulation domain. The mixing-driven momentum transfer predicts that the more ICM mixes in, the faster the ISM moves, resulting in the anti-correlation of outflow velocity and gas metallicity of the stripped ISM. The compression of the ISM disks due to the ICM ram pressure enhances star formation rates up to 50% compared to the model without ICM. With the ICM ram pressure higher than the disk anchoring pressure, star formation is quenched within ~100 Myr.
37 pages, 15 figures, Accepted for publication in the Astrophysical Journal
References in corpus (46)
- The NumPy array: a structure for efficient numerical computation
- Athena: A New Code for Astrophysical MHD
- Momentum Injection by Supernovae in the Interstellar Medium
- CMasher: Scientific colormaps for making accessible, informative and 'cmashing' plots
- Ram Pressure Stripping in High-Density Environments
- Draping of Cluster Magnetic Fields over Bullets and Bubbles -- Morphology and Dynamic Effects
- Magnetized Gas Clouds can Survive Acceleration by a Hot Wind
- The Launching of Cold Clouds by Galaxy Outflows I: Hydrodynamic Interactions with Radiative Cooling
- MUSE sneaks a peek at extreme ram-pressure stripping events. I. A kinematic study of the archetypal galaxy ESO137-001
- On the origin of the faint-end of the red sequence in high density environments
- Ram pressure stripping of disc galaxies orbiting in clusters. I. Mass and radius of the remaining gas disc
- On the influence of ram-pressure stripping on the star formation of simulated spiral galaxies
- Superbubbles in the Multiphase ISM and the Loading of Galactic Winds
- Multiphase Gas and the Fractal Nature of Radiative Turbulent Mixing Layers
- The Physical Nature of Starburst-Driven Galactic Outflows
- Efficiency of gas cooling and accretion at the disc-corona interface
- First results from SMAUG: Characterization of Multiphase Galactic Outflows from a Suite of Local Star-Forming Galactic Disk Simulations
- Interaction of a cold cloud with a hot wind: the regimes of cloud growth and destruction and the impact of magnetic fields
- The importance of magnetic-field-oriented thermal conduction in the interaction of SNR shocks with interstellar clouds
- Ram-pressure stripped molecular gas in the Virgo spiral galaxy NGC 4522
- Survival and mass growth of cold gas in a turbulent, multiphase medium
- The effect of ram pressure on the molecular gas of galaxies: three case studies in the Virgo cluster
- Radiative Mixing Layers: Insights from Turbulent Combustion
- The Stellar Populations of Stripped Spiral Galaxies in the Virgo Cluster
- Growth and structure of multiphase gas in the cloud-crushing problem with cooling
- GASP XXIII: A jellyfish galaxy as an astrophysical laboratory of the baryonic cycle
- GASP. XXII The molecular gas content of the JW100 jellyfish galaxy at z~0.05: does ram pressure promote molecular gas formation?
- Ram pressure stripping candidates in the Coma Cluster: Evidence for enhanced star formation
- VERTICO: The Virgo Environment Traced In CO Survey
- GASP XVII. HI imaging of the jellyfish galaxy JO206: gas stripping and enhanced star formation
- The high molecular gas content, and the efficient conversion of neutral into molecular gas, in jellyfish galaxies
- A Framework for Multiphase Galactic Wind Launching using TIGRESS
- It's Cloud's Illusions I Recall: Mixing Drives the Acceleration of Clouds from Ram Pressure Stripped Galaxies
- The Ties that Bind? Galactic Magnetic Fields and Ram Pressure Stripping
- A simple model for mixing and cooling in cloud-wind interactions
- The Journey Counts: The Importance of Including Orbits when Simulating Ram Pressure Stripping
- GASP XXIV. The history of abruptly quenched galaxies in clusters
- Shock-multicloud interactions in galactic outflows -- II. Radiative fractal clouds and cold gas thermodynamics
- GASP XXVI. HI Gas in Jellyfish Galaxies: The case of JO201 and JO206
- The fate of the gaseous disks of galaxies that fall into clusters
- Diffuse Ionized Gas in Simulations of Multiphase, Star-Forming Galactic Disks
- Dual Effects of Ram Pressure on Star Formation in Multi-phase Disk Galaxies with Strong Stellar Feedback
- GASP XXXIV: Unfolding the thermal side of ram pressure stripping in the jellyfish galaxy JO201
- Shock-multicloud interactions in galactic outflows -- I. Cloud layers with log-normal density distributions
- Sub-galactic scaling relations between X-ray luminosity, star-formation rate, and stellar mass
- The in situ formation of molecular and warm ionised gas triggered by hot outflows
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- Introducing TIGRESS-NCR: I. Co-Regulation of the Multiphase Interstellar Medium and Star Formation Rates
- The hot circumgalactic media of massive cluster satellites in the TNG-Cluster simulation: existence and detectability
- VERTICO V: The environmentally driven evolution of the inner cold gas discs of Virgo cluster galaxies
- Ram pressure stripping in clusters: Gravity can bind the ISM but not the CGM
- Two Channels of Metal-Rich Compact Stellar System Formation: Starbursts under High Ram Pressure versus Tidal Stripping