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Cosmic ray spectrum of protons plus helium nuclei between 6 TeV and 158 TeV from HAWC data

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arxiv 2204.06662 v1 pith:T6CVY2JD submitted 2022-04-13 astro-ph.HE

classification astro-ph.HE
keywords spectrumdatahawcnucleibreakcosmicenergyfeature
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

A measurement with high statistics of the differential energy spectrum of light elements in cosmic rays, in particular, of primary H plus He nuclei, is reported. The spectrum is presented in the energy range from $6$ to $158$ TeV per nucleus. Data was collected with the High Altitude Water Cherenkov (HAWC) Observatory between June 2015 and June 2019. The analysis was based on a Bayesian unfolding procedure, which was applied on a subsample of vertical HAWC data that was enriched to $82\%$ of events induced by light nuclei. To achieve the mass separation, a cut on the lateral age of air shower data was set guided by predictions of CORSIKA/QGSJET-II-04 simulations. The measured spectrum is consistent with a broken power-law spectrum and shows a kneelike feature at around $E = 24.0^{+3.6}_{-3.1} $ TeV, with a spectral index $\gamma = -2.51 \pm 0.02$ before the break and with $\gamma = -2.83 \pm 0.02$ above it. The feature has a statistical significance of $4.1 \, \sigma$. Within systematic uncertainties, the significance of the spectral break is $0.8 \, \sigma$.

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  1. Co-evolution of cosmic ray energy spectra, composition, and anisotropies

    astro-ph.HE 2025-06 conditional novelty 5.0 of 10

    A four-component model of two Galactic and two extragalactic source populations reproduces the correlated spectral, composition, and anisotropy structures of cosmic rays from tens of GeV to 100 EeV.

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