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Mapping the AMS-02 and CALET Data onto the Source Spectra and Residence Times of Galactic Cosmic Rays

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arxiv 2309.08823 v3 pith:PEARLJ7J submitted 2023-09-16 astro-ph.HE

classification astro-ph.HE
keywords spectracosmicsourcenucleirayscomponentscosmic-rayenergy
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abstract

The recent measurements of the spectral intensities of cosmic-ray nuclei have suggested that the ratio of Boron to Carbon nuclei, $R(E)$, comprises two components, $R_1(E)$ which carries all of the energy dependence and the other $R_A$, a constant independent of energy per nucleon. This finding supports the earlier theoretical expectations and results of gamma-ray astronomy that one of these components is attributable to spallation in a cocoon like region surrounding the sources and the other in the general interstellar medium before cosmic rays leak away from the Galaxy. A new model-independent way of analyzing cosmic-ray spectra is presented here to shed light on the recent findings: Imposing the single constraint that the source function of B nuclei is minimal we use a cascade of rate equations to map point-by-point the observed cosmic ray spectra of p, B, C, O and Fe on to their source spectra and the two life-times of cosmic rays $\tau_G$ in the Galaxy and $\tau_S$ in the cocoons surrounding the sources. The model independent results show that the appropriate choice is $\tau_S(E)$ is responsible for $R_1(E)$ and the source spectra are power laws with indices of $\sim-2.7$.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Precision spectral measurements of Chromium and Titanium from 10 to 250 GeV$/n$ and sub-Iron to Iron ratio with the Calorimetric Electron Telescope on the ISS

    astro-ph.HE 2025-07 conditional novelty 6.0 of 10

    CALET's 8-year data give the first high-statistics chromium and titanium cosmic-ray spectra (10-250 GeV/n) and their ratios to iron, all consistent with single power laws.

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