Cosmic Ray-Driven Galactic Winds with Resolved ISM and Ion-Neutral Damping
arXiv:2410.06988 · doi:10.3847/1538-4357/adda3d
Abstract
Feedback processes in galaxies dictate their structure and evolution. Baryons can be cycled through stars, which inject energy into the interstellar medium (ISM) in supernova explosions, fueling multiphase galactic winds. Cosmic rays (CRs) accelerated at supernova remnants are an important component of feedback. CRs can effectively contribute to wind driving; however, their impact heavily depends on the assumed CR transport model. We run high-resolution "tallbox" simulations of a patch of a galactic disk using the moving mesh magnetohydrodynamics code AREPO, including varied CR implementations and the CRISP non-equilibrium thermochemistry model. We characterize the impact of CR feedback on star formation and multiphase outflows. While CR-driven winds are able to supply energy to a global-scale wind, a purely thermal wind loses most of its energy by the time it reaches 3 kpc above the disk midplane. We further find that the adopted CR transport model significantly affects the steady-state of the wind. In the model with CR advection, streaming, diffusion, and nonlinear Landau damping, CRs provide very strong feedback. Additionally accounting for ion-neutral damping (IND) decouples CRs from the cold ISM, which reduces the impact of CRs on the star formation rate. Nevertheless, CRs in this most realistic model are able to accelerate warm gas and levitate cool gas in the wind but have little effect on cold gas and hot gas. This model displays moderate mass loading and significant CR energy loading, demonstrating that IND does not prevent CRs from providing effective feedback.
28 pages, 13 figures. Accepted to ApJ
References in corpus (96)
- The chemical composition of the Sun
- E pur si muove: Galiliean-invariant cosmological hydrodynamical simulations on a moving mesh
- Secular Evolution and the Formation of Pseudobulges in Disk Galaxies
- Galactic Winds
- Physical Models of Galaxy Formation in a Cosmological Framework
- Constraints on the relationship between stellar mass and halo mass at low and high redshift
- The Circumgalactic Medium
- Estimating Star Formation Rates from Infrared and Radio Luminosities: The Origin of the Radio-Infrared Correlation
- Theoretical Challenges in Galaxy Formation
- On the evolution of the HI column density distribution in cosmological simulations
- Cool Outflows in Galaxies and their Implications
- The Arepo public code release
- Simulating cosmic structure formation with the GADGET-4 code
- Improving the convergence properties of the moving-mesh code AREPO
- The SILCC (SImulating the LifeCycle of molecular Clouds) project: I. Chemical evolution of the supernova-driven ISM
- Thermal Instability in Gravitationally-Stratified Plasmas: Implications for Multi-Phase Structure in Clusters and Galaxy Halos
- Simulations of magnetic fields in isolated disk galaxies
- The Starburst-Driven Molecular Wind in NGC 253 and the Suppression of Star Formation
- Magnetohydrodynamics on an unstructured moving grid
- The Milky Way's Kiloparsec Scale Wind: A Hybrid Cosmic-Ray and Thermally Driven Outflow
- Stars, Gas, and Dark Matter in the Solar Neighborhood
- On the Origin of the Global Schmidt Law of Star Formation
- Three-phase Interstellar medium in Galaxies Resolving Evolution with Star formation and Supernova feedback (TIGRESS): Algorithms, Fiducial model, and Convergence
- KROME - a package to embed chemistry in astrophysical simulations
- Galactic winds driven by cosmic-ray streaming
- Cosmological simulations of the circumgalactic medium with 1 kpc resolution: enhanced HI column densities
- Cosmic-ray Driven Outflows in Global Galaxy Disk Models
- The SILCC project: III. Regulation of star formation and outflows by stellar winds and supernovae
- The Impact of Enhanced Halo Resolution on the Simulated Circumgalactic Medium
- Ionized outflows from active galactic nuclei as the essential elements of feedback
- Simulating cosmic ray physics on a moving mesh
- Consistent modelling of the meta-galactic UV background and the thermal/ionization history of the intergalactic medium
- Cosmic ray transport in galaxy clusters: implications for radio halos, gamma-ray signatures, and cool core heating
- Global simulations of galactic winds including cosmic ray streaming
- Vertical structure of a supernova-driven turbulent magnetized ISM
- Cooler and smoother -- the impact of cosmic rays on the phase structure of galactic outflows
- The Eddington Limit in Cosmic Rays: An Explanation for the Observed Faintness of Starbursting Galaxies
- The dependence of Galactic outflows on the properties and orientation of zCOSMOS galaxies at z ~ 1
- The role of cosmic ray pressure in accelerating galactic outflows
- Impact of Cosmic Ray Transport on Galactic Winds
- First results from SMAUG: Characterization of Multiphase Galactic Outflows from a Suite of Local Star-Forming Galactic Disk Simulations
- Zooming in on accretion - II. Cold Circumgalactic Gas Simulated with a super-Lagrangian Refinement Scheme
- Cosmic ray physics in calculations of cosmological structure formation
- Galaxies that Shine: radiation-hydrodynamical simulations of disk galaxies
- Vertical Equilibrium, Energetics, and Star Formation Rates in Magnetized Galactic Disks Regulated by Momentum Feedback from Supernovae
- Quantifying Supernovae-Driven Multiphase Galactic Outflows
- Galactic porosity and a star formation threshold for the escape of ionising radiation from galaxies
- Cosmic-ray hydrodynamics: Alfvén-wave regulated transport of cosmic rays
- A New Numerical Scheme for Cosmic Ray Transport
- The effect of magnetic fields on properties of the circumgalactic medium
- Role of Cosmic Rays in the Circumgalactic Medium
- The Impact of Cosmic Rays on Thermal Instability in the Circumgalactic Medium
- Three-fluid plasmas in star formation II. Momentum transfer rate coefficients
- The impact of magnetic fields on thermal instability
- Magnetising the circumgalactic medium of disk galaxies
- CLASSY III: The Properties of Starburst-Driven Warm Ionized Outflows
- Effects of Different Cosmic Ray Transport Models on Galaxy Formation
- Simulating Gamma-ray Emission in Star-forming Galaxies
- Cosmic Ray Transport, Energy Loss, and Influence in the Multiphase Interstellar Medium
- PHANGS-JWST First Results: Multi-wavelength view of feedback-driven bubbles (The Phantom Voids) across NGC 628
- A Framework for Multiphase Galactic Wind Launching using TIGRESS
- Cosmic rays and non-thermal emission in simulated galaxies: III. probing cosmic ray calorimetry with radio spectra and the FIR-radio correlation
- Introducing TIGRESS-NCR: I. Co-Regulation of the Multiphase Interstellar Medium and Star Formation Rates
- Role of Cosmic Ray Streaming and Turbulent Damping in Driving Galactic Winds
- Simulating radio synchrotron emission in star-forming galaxies: small-scale magnetic dynamo and the origin of the far infrared-radio correlation
- SILCC VII -- Gas kinematics and multiphase outflows of the simulated ISM at high gas surface densities
- Cosmic rays and non-thermal emission in simulated galaxies. II. -ray maps, spectra and the far infrared--ray relation
- Radiation-MagnetoHydrodynamics simulations of cosmic ray feedback in disc galaxies
- Fermi-LAT Observations of Gamma-Ray Emission Towards the Outer Halo of M31
- Detection of magnetic fields in the circumgalactic medium of nearby galaxies using Faraday rotation
- Kinematics and Dynamics of Multiphase Outflows in Simulations of the Star-Forming Galactic ISM
- Cosmic-Ray Transport in Varying Galactic Environments
- The effect of cosmic-ray acceleration on supernova blast wave dynamics
- Bipolar Outflows out to 10~kpc for Massive Galaxies at Redshift
- A new cosmic ray-driven instability
- The impact of cosmic rays on dynamical balance and disk-halo interaction in Lstar disk galaxies
- An observational test for star formation prescriptions in cosmological hydrodynamical simulations
- How gas flows shape the stellar-halo mass relation in the EAGLE simulation
- CHANG-ES XXVI: Insights into cosmic-ray transport from radio halos in edge-on galaxies
- A finite volume method for two-moment cosmic-ray hydrodynamics on a moving mesh
- Evolution and observational signatures of the cosmic ray electron spectrum in SN 1006
- Boosting galactic outflows with enhanced resolution
- Empirically-motivated early feedback: momentum input by stellar feedback in galaxy simulations inferred through observations
- Evidence for Cosmic-Ray Escape in the Small Magellanic Cloud using Fermi Gamma-rays
- How Cosmic Rays Mediate the Evolution of the Interstellar Medium
- Impact of supernova and cosmic-ray driving on the surface brightness of the galactic halo in soft X-rays
- On the Kinematics of Cold, Metal-enriched Galactic Fountain Flows in Nearby Star-forming Galaxies
- Turbulent dissipation, CH abundance, H line luminosities, and polarization in the cold neutral medium
- Why are thermally- and cosmic ray-driven galactic winds fundamentally different?
- The stellar population responsible for a kiloparsec size superbubble seen in the JWST "phantom" images of NGC628
- Deciphering the physical basis of the intermediate-scale instability
- Gamma-ray emission from spectrally resolved cosmic rays in galaxies
- The Effect of Cosmic Rays on the Observational Properties of the CGM
- CHANG-ES XXXII: Spatially Resolved Thermal/Nonthermal Separation from Radio Data Alone -- New Probes into NGC 3044 and NGC 5775
- Galaxies at a Cosmic-Ray Eddington Limit
- Effect of cosmic rays and ionizing radiation on observational ultraviolet plasma diagnostics in the circumgalactic medium
Cited by in corpus (4)
- Turbulent gas-rich discs at high redshift: origin of thick stellar discs through 3D 'baryon sloshing'
- A cosmic-ray loaded nascent outflow driven by a massive star cluster
- JWST Observations of Starbursts: Dust Processing in the M82 Superwind
- A ring-shaped starburst as a galactic wind-generating mechanism: Morphology, emission, and mass ejection