Cosmic rays and non-thermal emission in simulated galaxies: III. probing cosmic ray calorimetry with radio spectra and the FIR-radio correlation
arXiv:2105.12134 · doi:10.1093/mnras/stab2535
Abstract
An extinction-free estimator of the star-formation rate (SFR) of galaxies is critical for understanding the high-redshift universe. To this end, the nearly linear, tight correlation of far-infrared (FIR) and radio luminosity of star-forming galaxies is widely used. While the FIR is linked to massive star formation, which also generates shock-accelerated cosmic ray (CR) electrons and radio synchrotron emission, a detailed understanding of the underlying physics is still lacking. Hence, we perform three-dimensional magneto-hydrodynamical (MHD) simulations of isolated galaxies over a broad range of halo masses and SFRs using the moving-mesh code AREPO, and evolve the CR proton energy density self-consistently. In post-processing, we calculate the steady-state spectra of primary, shock-accelerated and secondary CR electrons, which result from hadronic CR proton interactions with the interstellar medium. The resulting total radio luminosities correlate with the FIR luminosities as observed and are dominated by primary CR electrons if we account for anisotropic CR diffusion. The increasing contribution of secondary emission up to 30 per cent in starbursts is compensated by the larger bremsstrahlung and Coulomb losses. CR electrons are in the calorimetric limit and lose most of their energy through inverse Compton interactions with star-light and cosmic microwave background (CMB) photons while less energy is converted to synchrotron emission. This implies steep steady-state synchrotron spectra in starbursts. Interestingly, we find that thermal free-free emission hardens the total radio spectra at high radio frequencies and reconciles calorimetric theory with observations while free-free absorption explains the observed low-frequency flattening towards the central regions of starbursts.
24 pages, 15 figures, submitted to MNRAS, comments are welcome
References in corpus (22)
- Analytical solutions for energy spectra of electrons accelerated by nonrelativistic shock-waves in shell type supernova remnants
- Magnetic Fields in Starburst Galaxies and The Origin of the FIR-Radio Correlation
- The Radio Spectral Energy Distribution and Star Formation Rate Calibration in Galaxies
- AMS-02 beryllium data and its implication for cosmic ray transport
- SILCC VI -- Multi-phase ISM structure, stellar clustering, and outflows with supernovae, stellar winds, ionising radiation and cosmic rays
- Winds, Clumps, and Interacting Cosmic Rays in M82
- Extragalactic Zeeman Detections in OH Megamasers
- The Radio Continuum-Star Formation Rate Relation in WSRT SINGS Galaxies
- LYRA I: Simulating the multi-phase ISM of a dwarf galaxy with variable energy supernovae from individual stars
- Simulating Gamma-ray Emission in Star-forming Galaxies
- Synchrotron spectral index and interstellar medium densities of star-forming galaxies
- The non-linear infrared-radio correlation of low-z galaxies: implications for redshift evolution, a new radio SFR recipe, and how to minimize selection bias
- Cosmic rays and non-thermal emission in simulated galaxies. II. -ray maps, spectra and the far infrared--ray relation
- Cosmic rays and non-thermal emission in simulated galaxies. I. Electron and proton spectra compared to Voyager-1 data
- Implementation of CR Energy SPectrum (CRESP) algorithm in PIERNIK MHD code. I. Spectrally resolved propagation of CR electrons on Eulerian grids
- The gamma-ray / infrared luminosity correlation of star-forming galaxies
- A finite volume method for two-moment cosmic-ray hydrodynamics on a moving mesh
- Deciphering the radio-star formation correlation on kpc-scales I. Adaptive kernel smoothing experiments
- The NIR structure of the barred galaxy NGC253 from VISTA
- Observations of Type Ia Supernova 2014J with FLITECAM/SOFIA
- Simulating TeV gamma-ray morphologies of shell-type supernova remnants
- Comparing different closure relations for cosmic ray hydrodynamics
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- Magnetic Fields on FIRE: Comparing B-fields in the multiphase ISM and CGM of Simulated L Galaxies to Observations
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- Nearby galaxies in the LOFAR Two-metre Sky Survey II. The magnetic field-gas relation
- The cosmic ray ionisation and -ray budgets of star-forming galaxies
- Synchrotron Emission on FIRE: Equipartition Estimators of Magnetic Fields in Simulated Galaxies with Spectrally-Resolved Cosmic Rays
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- Cosmic Ray Interstellar Propagation Tool using Itô Calculus (criptic): software for simultaneous calculation of cosmic ray transport and observational signatures
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- Starburst Nuclei as Light Dark Matter Laboratories
- The impact of magnetic fields on cosmological galaxy mergers -- II. Modified angular momentum transport and feedback
- The evolution of cosmic ray electrons in the cosmic web: seeding by AGN, star formation and shocks
- Cosmic Ray-Driven Galactic Winds with Resolved ISM and Ion-Neutral Damping
- Deep uGMRT observations of the ELAIS-North 1 field: statistical properties of radio--infrared relations up to 2
- A model for the infrared-radio correlation of main-sequence galaxies at GHz frequencies and its variation on redshift and stellar mass
- CHANG-ES XXXIV: Magnetic Field Structure in Edge-On Galaxies Characterising large-scale magnetic fields in galactic halos
- CONGRuENTS (COsmic-ray, Neutrino, Gamma-ray and Radio Non-Thermal Spectra). I. A predictive model for galactic non-thermal emission
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- CONGRuENTS (COsmic-ray, Neutrino, Gamma-ray and Radio Non-Thermal Spectra). II. Population-level correlations between galactic infrared, radio, and γ-ray emission
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- Non-thermal emission in the central starburst region of M82
- CHILLING: Continuum Halos in LVHIS Local Irregular Nearby Galaxies - Radio continuum spectral behavior of dwarf galaxies
- Effect of cosmic rays and ionizing radiation on observational ultraviolet plasma diagnostics in the circumgalactic medium
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