Can Cooling and Heating Functions be Modeled with Homogeneous Radiation Fields?
arXiv:2109.01674 · doi:10.3847/1538-4357/ac85e1
Abstract
Cooling and heating functions describe how radiative processes impact the thermal state of a gas as a function of its temperature and other physical properties. In a most general case the functions depend on the detailed distributions of ionic species and on the radiation spectrum. Hence, these functions may vary on a very wide range of spatial and temporal scales. In this paper, we explore cooling and heating functions between in simulated galaxies from the Cosmic Reionization On Computers (CROC) project. We compare three functions. First, the actual cooling and heating rates of hydrodynamic cells as a function of cell temperature. Second, the median cooling and heating functions computed using median interstellar medium (ISM) properties (median ISM). Last, the median of the cooling and heating functions of all gas cells (instantaneous). We find that the median ISM and instantaneous approaches to finding a median cooling and heating function give identical results within the spread due to cell-to-cell variation. However, the actual cooling (heating) rates experienced by the gas at different temperatures in the simulations do not correspond to either summarized cooling (heating) functions. In other words, the thermodynamics of the gas in the simulations cannot be described by a single set of a cooling plus a heating function with a spatially constant radiation field that could be computed with common tools, such as Cloudy.
12 pages, 7 figures. Key figure: figure 2. Accepted to ApJ
References in corpus (10)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- The effect of photo-ionization on the cooling rates of enriched, astrophysical plasmas
- A New Calculation of the Ionizing Background Spectrum and the Effects of HeII Reionization
- Effects of Baryons and Dissipation on the Matter Power Spectrum
- Cosmic Reionization On Computers I. Design and Calibration of Simulations
- Cosmic Reionization On Computers II. Reionization History and Its Back Reaction on Early Galaxies
- Radiative cooling rates, ion fractions, molecule abundances and line emissivities including self-shielding and both local and metagalactic radiation fields
- Exploring the Milky Way Circumgalactic Medium in a Cosmological Context with a Semi-Analytic Model
- Impact of the external radiation field on the structure and evolution of supernova remnants
Cited by in corpus (3)
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- Diagnosing the interstellar medium of galaxies with far-infrared emission lines II. [C II], [O I], [O III], [N II] and [N III] up to z=6
- Exploring the Dependence of Gas Cooling and Heating Functions on the Incident Radiation Field with Machine Learning