CRPropa: A Numerical Tool for the Propagation of UHE Cosmic Rays, Gamma-rays and Neutrinos
arXiv:astro-ph/0603675 · doi:10.1016/j.astropartphys.2007.09.004
Abstract
To understand the origin of ultra-high energy cosmic rays (UHECRs, defined to be above 10^18 eV), it is required to model in a realistic way their propagation in the Universe. UHECRs can interact with low energy radio, microwave, infrared and optical photons to produce electron/positron pairs or pions. The latter decay and give rise to neutrinos and electromagnetic cascades extending down to MeV energies. In addition, deflections in cosmic magnetic fields can influence the spectrum and sky distribution of primary cosmic rays and, due to the increased propagation path length, the secondary neutrino and gamma-ray fluxes. Neutrino, gamma-ray, cosmic ray physics and extra-galactic magnetic fields are, therefore, strongly linked subjects and should be considered together in order to extract maximal information from existing and future data, like the one expected from the Auger Observatory. For that purpose, we have developed CRPropa, a publicly-available numerical package which takes into account interactions and deflections of primary UHECRs as well as propagation of secondary electromagnetic cascades and neutrinos. CRPropa allows to compute the observable properties of UHECRs and their secondaries in a variety of models for the sources and propagation of these particles. Here we present physical processes taken into account as well as benchmark examples; a detailed documentation of the code can be found on our web site.
21 pages, 12 figures. Package and information/examples available on http://apcauger.in2p3.fr/CRPropa/index.php
Cited by in corpus (17)
- Lorentz Violation for Photons and Ultra-High Energy Cosmic Rays
- CRPropa 3.2 -- an advanced framework for high-energy particle propagation in extragalactic and galactic spaces
- Simulations of ultra-high Energy Cosmic Rays in the local Universe and the origin of Cosmic Magnetic Fields
- The Gamma-Ray Window to Intergalactic Magnetism
- High-energy cosmic ray nuclei from tidal disruption events: Origin, survival, and implications
- MeV sterile neutrinos in low reheating temperature cosmological scenarios
- Propagation of Ultra High Energy Cosmic Rays in Extragalactic Magnetic Fields: A view from cosmological simulations
- An updated estimate of the cosmic radio background and implications for ultra-high-energy photon propagation
- Non-Universal Spectra of Ultra-High Energy Cosmic Ray Primaries and Secondaries in a Structured Universe
- CRT: A numerical tool for propagating ultra-high energy cosmic rays through Galactic magnetic field models
- Secondary neutrino and gamma-ray fluxes from SimProp and CRPropa
- UHECR mass composition at highest energies from anisotropy of their arrival directions
- Ultra high energy neutrino-nucleon cross section from cosmic ray experiments and neutrino telescopes
- Searches for correlation between UHECR events and high-energy gamma-ray Fermi-LAT data
- Simulation study of GZK photon fluxes
- Modeling Hadronic Interactions in Ultra-High-Energy Cosmic Rays within Astrophysical Environments: A Parametric Approach
- Statistical Tools for Analyzing the Cosmic Ray Energy Spectrum