Implications of Lithium to Oxygen AMS-02 spectra on our understanding of cosmic-ray diffusion
arXiv:2103.09824 · doi:10.1103/PhysRevD.103.103016
Abstract
We analyze recent AMS-02 comic-ray measurements of Lithium, Beryllium, Boron, Carbon, Nitrogen and Oxygen. The emphasis of the analysis is on systematic uncertainties related to propagation and nuclear cross sections. To investigate the uncertainties in the propagation scenario, we consider five different frameworks, differing with respect to the inclusion of a diffusion break at a few GV, the presence of reacceleration, and the presence of a break in the injection spectra of primaries. For each framework we fit the diffusion equations of cosmic rays and explore the parameter space with Monte Carlo methods. At the same time, the impact of the uncertainties in the nuclear production cross sections of secondaries is explicitly considered and included in the fit through the use of nuisance parameters. We find that all the considered frameworks are able to provide a good fit. In particular, two competing scenarios, one including a break in diffusion but no reacceleration and the other with reacceleration but no break in diffusion are both allowed. The inclusion of cross-section uncertainties is, however, crucial, to this result. Thus, at the moment, these uncertainties represent a fundamental systematic preventing a deeper understanding of the properties of CR propagation. We find, nonetheless, that the slope of diffusion at intermediate rigidities is robustly constrained in the range in models without convection, or if convection is included in the fit. Furthermore, we find that the use of the AMS-02 Beryllium data provides a lower limit on the vertical size of the Galactic propagation halo of kpc.
26 pages, 11 figures; v2: updated to the published version, results are unchanged
References in corpus (16)
- Spectral breaks as a signature of cosmic ray induced turbulence in the Galaxy
- Measurement of boron and carbon fluxes in cosmic rays with the PAMELA experiment
- Galactic cosmic rays after the AMS-02 observations
- AMS-02 beryllium data and its implication for cosmic ray transport
- Scrutinizing the evidence for dark matter in cosmic-ray antiprotons
- Cosmic-ray transport from AMS-02 B/C data: benchmark models and interpretation
- Cosmic Ray Antiprotons at High Energies
- New calculation of antiproton production by cosmic ray protons and nuclei
- Galactic cosmic-ray propagation in the light of AMS-02: I. Analysis of protons, helium, and antiprotons
- Galactic halo size in the light of recent AMS-02 data
- Low energy cosmic ray positron fraction explained by charge-sign dependent solar modulation
- Dark matter or correlated errors: Systematics of the AMS-02 antiproton excess
- Power requirements for cosmic ray propagation models involving diffusive reacceleration; estimates and implications for the damping of interstellar turbulence
- Implications of current nuclear cross sections on secondary cosmic rays with the upcoming DRAGON2 code
- The Fluorescence detector Array of Single-pixel Telescopes: Contributions to the 35th International Cosmic Ray Conference (ICRC 2017)
- Voyager 1 Measurements Beyond the Heliopause of Galactic Cosmic Ray Helium, Boron, Carbon, Oxygen, Magnesium, Silicon and Iron Nuclei with Energies 0.5 to >1.5 GeV/nuc
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