The cosmic ray ionisation and -ray budgets of star-forming galaxies
arXiv:2211.03488 · doi:10.1093/mnras/stad459
Abstract
Cosmic rays in star-forming galaxies are a dominant source of both diffuse -ray emission and ionisation in gas too deeply shielded for photons to penetrate. Though the cosmic rays responsible for -rays and ionisation are of different energies, they are produced by the same star formation-driven sources, and thus galaxies' star formation rates, -ray luminosities, and ionisation rates should all be linked. In this paper we use up-to-date cross-section data to determine this relationship, finding that cosmic rays in a galaxy of star formation rate and gas depletion time produce a maximum primary ionisation rate $ζ\approx 1\times 10^{-16} (t_\mathrm{dep}/\mbox{Gyr})^{-1}$ s and a maximum -ray luminosity $L_γ\approx 4\times 10^{39} (\dot{M}_*/\mathrm{M}_\odot\mbox{ yr}^{-1})$ erg s in the 0.1 - 100 GeV band. These budgets imply either that the ionisation rates measured in Milky Way molecular clouds include a significant contribution from local sources that elevate them above the Galactic mean, or that CR-driven ionisation in the Milky Way is enhanced by sources not linked directly to star formation. Our results also imply that ionisation rates in starburst systems are only moderately enhanced compared to those in the Milky Way. Finally, we point out that measurements of -ray luminosities can be used to place constraints on galactic ionisation budgets in starburst galaxies that are nearly free of systematic uncertainties on the details of cosmic ray acceleration.
19 pages, 8 figures, accepted for publication in MNRAS
References in corpus (43)
- Herschel Survey of Galactic OH+, H2O+, and H3O+: Probing the Molecular Hydrogen Fraction and Cosmic-Ray Ionization Rate
- Global cosmic-ray related luminosity and energy budget of the Milky Way
- On the rate of core collapse supernovae in the Milky Way
- Effective destruction of CO by cosmic rays: implications for tracing H gas in the Universe
- Particle acceleration in winds of star clusters
- The -ray Emission of Star-Forming Galaxies
- Cosmic ray transport in starburst galaxies
- Calibration of ultraviolet, mid-infrared and radio star formation rate indicators
- The Global Star Formation Laws of Galaxies from a Radio Continuum Perspective
- The diffuse -ray background is dominated by star-forming galaxies
- First Predicted Cosmic Ray Spectra, Primary-to-Secondary Ratios, and Ionization Rates from MHD Galaxy Formation Simulations
- Evidence of 200 TeV photons from HAWC J1825-134
- Cosmic rays and non-thermal emission in simulated galaxies: III. probing cosmic ray calorimetry with radio spectra and the FIR-radio correlation
- Reconciling cosmic-ray transport theory with phenomenological models motivated by Milky-Way data
- Power requirements for cosmic ray propagation models involving diffusive reacceleration; estimates and implications for the damping of interstellar turbulence
- Cosmic rays and non-thermal emission in simulated galaxies. II. -ray maps, spectra and the far infrared--ray relation
- Low energy cosmic rays
- Cosmic rays and non-thermal emission in simulated galaxies. I. Electron and proton spectra compared to Voyager-1 data
- The evolution of turbulent galactic discs: gravitational instability, feedback and accretion
- OH+ and H2O+ absorption toward PKS1830-211
- Stochastic Fluctuations of Low-Energy Cosmic Rays and the Interpretation of Voyager Data
- Non-thermal emission from cosmic rays accelerated in HII regions
- Diffuse gamma-ray emission toward the massive star-forming region, W40
- Particle acceleration and multimessenger emission from starburst-driven galactic winds
- Cosmic rays across the star-forming galaxy sequence. I: Cosmic ray pressures and calorimetry
- The gamma-ray / infrared luminosity correlation of star-forming galaxies
- Turbulent diffusion of streaming cosmic rays in compressible, partially ionised plasma
- A hydrodynamical study of outflows in starburst galaxies with different driving mechanisms
- Morphological and spectral study of 4FGL J1115.1-6118 in the region of the young massive stellar cluster NGC 3603
- On the origin of nitrogen at low metallicity
- Exploring the physics behind the non-thermal emission from star-forming galaxies detected in gamma rays
- Cosmic rays across the star-forming galaxy sequence. II: Stability limits and the onset of cosmic ray-driven outflows
- Rigorous theory for secondary cosmic-ray ionization
- Supernovae and their host galaxies - V. The vertical distribution of supernovae in disc galaxies
- Particle acceleration and magnetic field amplification in massive young stellar object jets
- The ionization rates of galactic nuclei and disks from Herschel/HIFI observations of water and its associated ions
- Transport of Protostellar Cosmic Rays in Turbulent Dense Cores
- Can a cosmic ray carrot explain the ionization level in diffuse molecular clouds?
- Cosmic Ray Interstellar Propagation Tool using Itô Calculus (criptic): software for simultaneous calculation of cosmic ray transport and observational signatures
- HD molecules at high redshift: cosmic-ray ionization rate in the diffuse interstellar medium
- Modeling of Cosmic-Ray Production and Transport and Estimation of Gamma-Ray and Neutrino Emissions in Starburst Galaxies
- The extragalactic -ray background: imprints from the physical properties and evolution of star-forming galaxy populations
- CRAFT (Cosmic Ray Acceleration From Turbulence) in Molecular Clouds
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- Probing the physics of star formation (ProPStar): I. First resolved maps of the electron fraction and cosmic-ray ionization rate in NGC 1333
- SUNRISE: The rich molecular inventory of high-redshift dusty galaxies revealed by broadband spectral line surveys
- Probing the heating of the neutral atomic interstellar medium in the Dwarf Galaxy Survey through infrared cooling lines
- High [OI] emission lines: ColdSIM simulations and ALMA observations
- The fragmentation of molecular clouds in starburst environments
- Does the HCN/CO ratio trace the star-forming fraction of gas? II. Variations in CO and HCN Emissivity
- Predicting the resolved CO emission of star-forming galaxies
- Updated Constraints on the Injection Energy of Positrons Generating the Galactic 511 keV -ray line
- Gauging the Impact of Cosmic Ray Feedback on the Stellar Initial Mass Function
- QED V: Variations in metal loading of galactic winds with element nucleosynthetic origin
- Modelling the non-equilibrium chemistry of the Milky Way's cold nuclear wind