From 10 Kelvin to 10 TeraKelvin: Insights on the Interaction Between Cosmic Rays and Gas in Starbursts
arXiv:1308.5241 · doi:10.1007/978-3-642-35410-6_29
Abstract
Recent work has both illuminated and mystified our attempts to understand cosmic rays (CRs) in starburst galaxies. I discuss my new research exploring how CRs interact with the ISM in starbursts. Molecular clouds provide targets for CR protons to produce pionic gamma rays and ionization, but those same losses may shield the cloud interiors. In the densest molecular clouds, gamma rays and Al-26 decay can provide ionization, at rates up to those in Milky Way molecular clouds. I then consider the free-free absorption of low frequency radio emission from starbursts, which I argue arises from many small, discrete H II regions rather than from a "uniform slab" of ionized gas, whereas synchrotron emission arises outside them. Finally, noting that the hot superwind gas phase fills most of the volume of starbursts, I suggest that it has turbulent-driven magnetic fields powered by supernovae, and that this phase is where most synchrotron emission arises. I show how such a scenario could explain the far-infrared radio correlation, in context of my previous work. A big issue is that radio and gamma-ray observations imply CRs also must interact with dense gas. Understanding how this happens requires a more advanced understanding of turbulence and CR propagation.
Conference proceedings for "Cosmic-ray induced phenomenology in star-forming environments: Proceedings of the 2nd Session of the Sant Cugat Forum of Astrophysics" (April 16-19, 2012). 16 pages, 5 figures
References in corpus (19)
- The VLA Low-frequency Sky Survey
- GeV Observations of Star-forming Galaxies with \textit{Fermi} LAT
- A connection between star formation activity and cosmic rays in the starburst galaxy M 82
- Magnetic Fields in Starburst Galaxies and The Origin of the FIR-Radio Correlation
- Detection of Gamma Rays From a Starburst Galaxy
- Iron line and diffuse hard X-ray emission from the starburst galaxy M82
- The Starburst Contribution to the Extra-Galactic Gamma-Ray Background
- Wild at Heart:-The Particle Astrophysics of the Galactic Centre
- Connecting Far-Infrared and Radio Morphologies of Disk Galaxies: Cosmic-Ray Electron Diffusion After Star Formation Episodes
- Super Star Cluster Velocity Dispersions and Virial Masses in the M82 Nuclear Starburst
- Extragalactic Zeeman Detections in OH Megamasers
- Spectral analysis and interpretation of the γ-ray emission from the Starburst galaxy NGC 253
- Interpreting the Low Frequency Radio Spectra of Starburst Galaxies: A Pudding of Strömgren Spheres
- Characterizing Cosmic-Ray Propagation in Massive Star-Forming Regions: The Case of 30 Doradus and the Large Magellanic Cloud
- 74 MHz Discrete HII Absorption Regions Towards The Inner Galaxy
- Estimates of relativistic electron and proton energy densities in starburst galactic nuclei from radio measurements
- Building up the spectrum of cosmic-rays in star-forming regions
- Starbursts and High-Redshift Galaxies are Radioactive: High Abundances of Al and Other Short Lived Radionuclides
- Gamma-Ray Dominated Regions: Extending the Reach of Cosmic Ray Ionization in Starburst Environments
Cited by in corpus (4)
- Ultra-High-Energy Cosmic Rays
- Acceleration of ultrahigh-energy cosmic rays in starburst superwinds
- On the possible correlation of Galactic VHE source locations and enhancements of the surface density in the Galactic plane
- The universality of the relation between magnetic fields and star formation in galaxies