English

Cosmic-ray transport from AMS-02 B/C data: benchmark models and interpretation

High Energy Astrophysical Phenomena 2019-07-03 v2 High Energy Physics - Phenomenology

Abstract

This article aims at establishing new benchmark scenarios for Galactic cosmic-ray propagation in the GV-TV rigidity range, based on fits to the AMS-02 B/C data with the USINE v3.5 propagation code. We employ a new fitting procedure, cautiously taking into account data systematic error correlations in different rigidity bins and considering Solar modulation potential and leading nuclear cross-section as nuisance parameters. We delineate specific low, intermediate, and high-rigidity ranges that can be related to both features in the data and peculiar microphysics mechanisms resulting in spectral breaks. We single out a scenario which yields excellent fits to the data and includes all the presumably relevant complexity, the BIG model. This model has two limiting regimes: (i) the SLIM model, a minimal diffusion-only setup, and (ii) the QUAINT model, a convection-reacceleration model where transport is tuned by non-relativistic effects. All models lead to robust predictions in the high-energy regime (10\gtrsim10GV), i.e. independent of the propagation scenario: at 1σ1\sigma, the diffusion slope δ\delta is [0.430.53][0.43-0.53], whereas K10K_{10}, the diffusion coefficient at 10GV, is [0.260.36][0.26-0.36]kpc2^2Myr1^{-1}; we confirm the robustness of the high-energy break, with a typical value Δh0.2\Delta_h\sim 0.2. We also find a hint for a similar (reversed) feature at low rigidity around the B/C peak (4\sim 4GV) which might be related to some effective damping scale in the magnetic turbulence.

Keywords

Cite

@article{arxiv.1904.08917,
  title  = {Cosmic-ray transport from AMS-02 B/C data: benchmark models and interpretation},
  author = {Yoann Genolini and Mathieu Boudaud and Pedro Ivo Batista and Sami Caroff and Laurent Derome and Julien Lavalle and Alexandre Marcowith and David Maurin and Vincent Poireau and Vivian Poulin and Sylvie Rosier and Pierre Salati and Pasquale Dario Serpico and Manuela Vecchi},
  journal= {arXiv preprint arXiv:1904.08917},
  year   = {2019}
}

Comments

16 pages, 4 figures: typo on a parameter fixed (Tables and Fig.3 updated), conclusions unchanged

R2 v1 2026-06-23T08:44:10.112Z