Cosmic-ray propagation with DRAGON2: I. numerical solver and astrophysical ingredients
Abstract
We present version 2 of the DRAGON code designed for computing realistic predictions of the CR densities in the Galaxy. The code numerically solves the interstellar CR transport equation (including inhomogeneous and anisotropic diffusion, either in space and momentum, advective transport and energy losses), under realistic conditions. The new version includes an updated numerical solver and several models for the astrophysical ingredients involved in the transport equation. Improvements in the accuracy of the numerical solution are proved against analytical solutions and in reference diffusion scenarios. The novel features implemented in the code allow to simulate the diverse scenarios proposed to reproduce the most recent measurements of local and diffuse CR fluxes, going beyond the limitations of the homogeneous galactic transport paradigm. To this end, several applications using DRAGON2 are presented as well. The new version facilitates the users to include their own physical models by means of a modular C++ structure.
Keywords
Cite
@article{arxiv.1607.07886,
title = {Cosmic-ray propagation with DRAGON2: I. numerical solver and astrophysical ingredients},
author = {Carmelo Evoli and Daniele Gaggero and Andrea Vittino and Giuseppe Di Bernardo and Mattia Di Mauro and Arianna Ligorini and Piero Ullio and Dario Grasso},
journal= {arXiv preprint arXiv:1607.07886},
year = {2017}
}
Comments
62 pages, 27 figures, 6 tables. Matches published JCAP version