arXiv · 2203.09538
Constraining ultra-high-energy cosmic ray composition through cross-correlations
Abstract
The chemical composition of the highest end of the ultra-high-energy cosmic ray spectrum is very hard to measure experimentally, and to this day it remains mostly unknown. Since the trajectories of ultra-high-energy cosmic rays are deflected in the magnetic field of the Galaxy by an angle that depends on their atomic number $Z$, it could be possible to indirectly measure $Z$ by quantifying the amount of such magnetic deflections. In this paper we show that, using the angular harmonic cross-correlation between ultra-high-energy cosmic rays and galaxies, we could effectively distinguish different atomic numbers with current data. As an example, we show how, if $Z=1$, the cross-correlation can exclude a $39\%$ fraction of Fe56 nuclei at $2\sigma$ for rays above $100\text{EeV}$.
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Konstantinos Tanidis, Federico R. Urban, Stefano Camera. 2022-03-17. Constraining ultra-high-energy cosmic ray composition through cross-correlations. https://doi.org/10.1088/1475-7516%2F2022%2F12%2F003
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