Catastrophic Cooling in Superwinds: Line Emission and Non-equilibrium Ionization
arXiv:1910.12882 · doi:10.3847/1538-4357/ab510d
Abstract
Outflows are a pervasive feature of mechanical feedback from super star clusters (SSC) in starburst galaxies, playing a fundamental role in galaxy evolution. Observations are now starting to confirm that outflows can undergo catastrophic cooling, suppressing adiabatic superwinds. Here we present a suite of one-dimensional, hydrodynamic simulations that study the ionization structure of these outflows and the resulting line emission generated by the cooling gas. We use the non-equilibrium atomic chemistry package within MAIHEM, our modified version of FLASH, which evolves the ionization state of the gas and computes the total cooling rate on an ion-by-ion basis. We find that catastrophically cooling models produce strong nebular line emission compared to adiabatic outflows. We also show that such models exhibit non-equilibrium conditions, thereby generating more highly ionized states than equivalent equilibrium models. When including photoionization from the parent SSC, catastrophically cooling models show strong C IV λ1549 and O VI λ1037 emission. For density bounded photoionization, He II λ1640, λ4686, C III] λ1908, Si IV λ1206, and Si III λ1400 are also strongly enhanced. These lines are seen in extreme starbursts where catastrophic cooling is likely to occur, suggesting that they may serve as diagnostics of such conditions. The higher ionization generated by these flows may help to explain line emission that cannot be attributed to SSC photoionization alone.
29 pages, 13 figures, accepted to ApJ
References in corpus (31)
- A New Calculation of the Ionizing Background Spectrum and the Effects of HeII Reionization
- Ubiquitous outflows in DEEP2 spectra of star-forming galaxies at z=1.4
- Massive molecular outflows and negative feedback in ULIRGs observed by Herschel-PACS
- Time-Dependent Ionization in Radiatively Cooling Gas
- The Discovery of 1000 km/s Outflows in Massive Post-starburst Galaxies at z=0.6
- The Dynamics of Radiation Pressure-Dominated HII Regions
- Radiative recombination data for modelling dynamic finite-density plasmas
- On the interplay between star formation and feedback in galaxy formation simulations
- Ultraviolet spectra of extreme nearby star-forming regions --- approaching a local reference sample for JWST
- 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 Chemical Evolution of Carbon, Nitrogen, and Oxygen in Metal-Poor Dwarf Galaxies
- HST/STIS Spectroscopy of Five Super Star Clusters in the Starburst Galaxy M82
- Intense CIV and HeII Emission in z~0 Galaxies: Probing High-Energy Ionizing Photons
- Numerical Study of Turbulent Mixing Layers with Non-Equilibrium Ionization Calculations
- The LyAlpha Line Profiles of Ultraluminous Infrared Galaxies: Fast Winds and Lyman Continuum Leakage
- Kinematics and Optical Depth in the Green Peas: Suppressed Superwinds in Candidate LyC Emitters
- Gas expulsion vs gas retention: what process dominates in young massive clusters?
- Dense CO in Mrk 71-A: Superwind Suppressed in a Young Super Star Cluster
- The Production of Cold Gas Within Galaxy Outflows
- Neutral Gas Properties and Ly Escape in Extreme Green Pea Galaxies
- The pressure confined wind of the massive and compact superstar cluster M82-A1
- Dynamics and Energy Loss in Superbubbles
- Neutral ISM, Lyman-Alpha and Lyman-continuum in the nearby starburst Haro 11
- Time-Dependent Cooling in Photoionized Plasma
- On the impact of radiation pressure on the dynamics and inner structure of dusty wind-driven shells
- How radiation affects superbubbles: Through momentum injection in early phase and photo-heating thereafter
- Atomic Chemistry In Turbulent Astrophysical Media I: Effect of Atomic Cooling
- The Effect of Turbulence on Nebular Emission Line Ratios
- On the Heating Efficiency Derived from Observations of Young Super Star Clusters in M82
- Non-equilibrium Ionization States Within Galactic Outflows: Explaining Their O VI and N V Column Densities
Cited by in corpus (20)
- Nitrogen-enriched, highly-pressurized nebular clouds surrounding a super star cluster at cosmic noon
- [CII] halos in ALPINE galaxies: smoking-gun of galactic outflows?
- Galactic winds and bubbles from nuclear starburst rings
- Ionization of HeII in star-forming galaxies by X-rays from cluster winds and superbubbles
- Catastrophic Cooling in Superwinds. III. Non-equilibrium Photoionization
- New Ionization Models and the Shocking Nitrogen Excess at z > 5
- Spectroscopy of CASSOWARY gravitationally-lensed galaxies in SDSS: characterisation of an extremely bright reionization-era analog at
- MOSEL Survey: Extremely weak outflows in EoR analogues at z=3-4
- Testing SALT Approximations with Numerical Radiation Transfer Code Part 1: Validity and Applicability
- Nebular C IV 1550 Imaging of the Metal-Poor Starburst Mrk 71: Direct Evidence of Catastrophic Cooling
- Physical Origins of Outflowing Cold Clouds in Local Star-forming Dwarf Galaxies
- Bidimensional Exploration of the warm-Temperature Ionised gaS (BETIS) II. Revisiting the ionisation mechanism of the extraplanar diffuse ionised gas
- Evidence for a large off-centered galactic outflow and its connection to the extraplanar diffuse ionized gas in IC 1553
- Disentangling the X-ray variability in the Lyman continuum emitter Haro 11
- Catastrophic Cooling in Superwinds. II. Exploring the Parameter Space
- Power-law Emission-line Wings and Radiation-Driven Superwinds in Local Lyman Continuum Emitters
- Mass-Loading and Non-Spherical Divergence in Hot Galactic Winds: Implications for X-ray Observations
- Observing the influence of the youngest super star clusters in NGC 1569: Keck Brackett spectroscopy
- Systematic selection of surrogate models for nonequilibrium chemistry
- Non-equilibrium Photoionization and Hydrodynamic Simulations of Starburst-driven Outflows