Measurement of the Iron Spectrum in Cosmic Rays by VERITAS
The VERITAS collaboration: A. Archer, W. Benbow, R. Bird, R. Brose, M., Buchovecky, V. Bugaev, M.P. Connolly, W. Cui, M.K. Daniel, A. Falcone, Q., Feng, J.P. Finley, H. Fleischhack, L. Fortson, A. Furniss, D. Hanna, O., Hervet, J. Holder, G. Hughes, T.B. Humensky, M. H\"utten

TL;DR
This study measures the iron nuclei spectrum in cosmic rays between 20 and 500 TeV using a novel template-based analysis on VERITAS data, providing improved accuracy and no evidence of spectral cutoff.
Contribution
First application of template-based energy reconstruction for iron-induced air showers in VERITAS, enhancing measurement precision of cosmic ray iron spectrum.
Findings
Spectrum follows a power law with index 2.82.
No spectral cutoff or break observed up to 500 TeV.
Results agree with previous measurements, with better statistics at high energies.
Abstract
We present a new measurement of the energy spectrum of iron nuclei in cosmic rays from 20 to 500 TeV. The measurement makes use of a template-based analysis method, which, for the first time, is applied to the energy reconstruction of iron-induced air showers recorded by the VERITAS array of imaging atmospheric Cherenkov telescopes. The event selection makes use of the direct Cherenkov light which is emitted by charged particles before the first interaction, as well as other parameters related to the shape of the recorded air shower images. The measured spectrum is well described by a power law over the full energy range, with and $f_0 = \left( 4.82 \pm 0.98 \mathrm{(stat.)}^{+2.12}_{-2.70} \mathrm{(syst.)} \right)\cdot…
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