The effects of metallicity, UV radiation and non-equilibrium chemistry in high-resolution simulations of galaxies
arXiv:1506.08829 · doi:10.1093/mnras/stw327
Abstract
We present a series of hydrodynamic simulations of isolated galaxies with stellar mass of . The models use a resolution of per particle and include a treatment for the full non-equilibrium chemical evolution of ions and molecules (157 species in total), along with gas cooling rates computed self-consistently using the non-equilibrium abundances. We compare these to simulations evolved using cooling rates calculated assuming chemical (including ionisation) equilibrium, and we consider a wide range of metallicities and UV radiation fields, including a local prescription for self-shielding by gas and dust. We find higher star formation rates and stronger outflows at higher metallicity and for weaker radiation fields, as gas can more easily cool to a cold (few hundred Kelvin) star forming phase under such conditions. Contrary to variations in the metallicity and the radiation field, non-equilibrium chemistry generally has no strong effect on the total star formation rates or outflow properties. However, it is important for modelling molecular outflows. For example, the mass of H outflowing with velocities is enhanced by a factor in non-equilibrium. We also compute the observable line emission from CII and CO. Both are stronger at higher metallicity, while CII and CO emission are higher for stronger and weaker radiation fields respectively. We find that CII is generally unaffected by non-equilibrium chemistry. However, emission from CO varies by a factor of . This has implications for the mean conversion factor between CO emission and H column density, which we find is lowered by up to a factor in non-equilibrium, and for the fraction of CO-dark molecular gas.
26 pages, 16 figures, accepted for publication in MNRAS. Minor changes relative to v1
References in corpus (27)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- The effect of photo-ionization on the cooling rates of enriched, astrophysical plasmas
- Massive molecular outflows and negative feedback in ULIRGs observed by Herschel-PACS
- The Resolved Properties of Extragalactic Giant Molecular Clouds
- The Atomic to Molecular Transition in Galaxies. II: HI and H_2 Column Densities
- The 2013 Release of Cloudy
- Modelling discontinuities and Kelvin-Helmholtz instabilities in SPH
- Time-Dependent Ionization in Radiatively Cooling Gas
- Inviscid SPH
- Molecular Hydrogen and Global Star Formation Relations in Galaxies
- Uncertainties in H2 and HD Chemistry and Cooling and their Role in Early Structure Formation
- Photoprocesses in protoplanetary disks
- A Compendium of Far-Infrared Line and Continuum Emission for 227 Galaxies Observed by the Infrared Space Observatory
- Environmental Dependence of the Kennicutt-Schmidt Relation in Galaxies
- The Atomic to Molecular Transition in Galaxies. I: An Analytic Approximation for Photodissociation Fronts in Finite Clouds
- HI-to-H2 Transitions and H I Column Densities in Galaxy Star-Forming Regions
- Bent by baryons: the low mass galaxy-halo relation
- CO-dark gas and molecular filaments in Milky Way type galaxies
- Star formation at very low metallicity. I: Chemistry and cooling at low densities
- P-Cygni Profiles of Molecular Lines toward Arp 220 Nuclei
- The ISM in spiral galaxies: can cooling in spiral shocks produce molecular clouds?
- Non-equilibrium chemistry and cooling in the diffuse interstellar medium - II. Shielded gas
- Stellar feedback as the origin of an extended molecular outflow in a starburst galaxy
- Outflow of hot and cold molecular gas from the obscured secondary nucleus of NGC3256: closing in on feedback physics
- Synthetic CO, H2 and HI surveys of the Galactic 2nd Quadrant, and the properties of molecular gas
- Atomic Chemistry In Turbulent Astrophysical Media I: Effect of Atomic Cooling
- Nuclear starburst-driven evolution of the central region in NGC 6764
Cited by in corpus (50)
- FIRE-2 Simulations: Physics versus Numerics in Galaxy Formation
- Theoretical Challenges in Galaxy Formation
- The FLAMINGO project: cosmological hydrodynamical simulations for large-scale structure and galaxy cluster surveys
- Star formation and molecular hydrogen in dwarf galaxies: a non-equilibrium view
- The origin of fast molecular outflows in quasars: molecule formation in AGN-driven galactic winds
- SILCC-Zoom: The dynamical and chemical evolution of molecular clouds
- Zooming on the internal structure of galaxies
- What FIREs Up Star Formation: the Emergence of the Kennicutt-Schmidt Law from Feedback
- Radiative Stellar Feedback in Galaxy Formation: Methods and Physics
- A Simple and Accurate Network for Hydrogen and Carbon Chemistry in the ISM
- Radiative cooling rates, ion fractions, molecule abundances and line emissivities including self-shielding and both local and metagalactic radiation fields
- NIHAO-UHD: The properties of MW-like stellar disks in high resolution cosmological simulations
- Thermal Phases of the Neutral Atomic Interstellar Medium -- from Solar Metallicity to Primordial Gas
- SILCC-Zoom: H and CO-dark gas in molecular clouds -- The impact of feedback and magnetic fields
- Metallicity dependence of the H/H and C/C/CO distributions in a resolved self-regulating interstellar medium
- The natural emergence of the correlation between H2 and star formation rate surface densities in galaxy simulations
- Predicting FIR lines from simulated galaxies
- Discrete Effects in Stellar Feedback: Individual Supernovae, Hypernovae, and IMF Sampling in Dwarf Galaxies
- Submillimeter flux as a probe of molecular ISM mass in high- galaxies
- Evolution of cosmic filaments and of their galaxy population from MHD cosmological simulations
- Dependence of on metallicity, intensity, and spatial scale in a self-regulated interstellar medium
- Young and turbulent: the early life of massive galaxy progenitors
- 3D chemical structure of diffuse turbulent ISM. I. Statistics of the HI-to-H transition
- The challenge of simultaneously matching the observed diversity of chemical abundance patterns in cosmological hydrodynamical simulations
- A chemical model for the interstellar medium in galaxies
- The [CII]--SFR correlation in dwarf galaxies across cosmic time
- RIGEL: Simulating dwarf galaxies at solar mass resolution with radiative transfer and feedback from individual massive stars
- A simple model for molecular hydrogen chemistry coupled to radiation hydrodynamics
- The effect of non-equilibrium metal cooling on the interstellar medium
- Metals in the circumgalactic medium are out of ionization equilibrium due to fluctuating active galactic nuclei
- Time-Dependent Cooling in Photoionized Plasma
- An observational test for star formation prescriptions in cosmological hydrodynamical simulations
- PDFchem: A new fast method to determine ISM properties and infer environmental parameters using probability distributions
- Simulating the atomic and molecular content of molecular clouds using probability distributions of physical parameters
- Chemical evolution of giant molecular clouds in simulations of galaxies
- Reproducing the CO-to-H conversion factor in cosmological simulations of Milky Way-mass galaxies
- Local photoionization feedback effects on galaxies
- The effects of local stellar radiation and dust depletion on non-equilibrium interstellar chemistry
- Chemical post-processing of magneto-hydrodynamical simulations of star-forming regions: robustness and pitfalls
- The complete census of molecular hydrogen in a simulated disc galaxy
- The Column Densities of Molecular Gas across Cosmic Time: Bridging Observations and Simulations
- Global Correlations Between the Radio Continuum, Infrared and CO Emission in Dwarf Galaxies
- The evolution of HCO in molecular clouds using a novel chemical post-processing algorithm
- Milky Way-like galaxies: stellar population properties of dynamically defined disks, bulges and stellar halos
- Hybrid-chimes: A model for radiative cooling and the abundances of ions and molecules in simulations of galaxy formation
- HYACINTH: HYdrogen And Carbon chemistry in the INTerstellar medium in Hydro simulations
- Modelling H and its effects on star formation using a joint implementation of GADGET-3 and KROME
- A multi-ion non-equilibrium solver for ionised astrophysical plasmas with arbitrary elemental abundances
- MUSE-ALMA Haloes XIII. Molecular gas in HI-selected galaxies
- Predicting the resolved CO emission of star-forming galaxies