Prospects for $\gamma$-ray observations of the Perseus galaxy cluster with the Cherenkov Telescope Array
The Cherenkov Telescope Array Consortium: K. Abe, S. Abe, F. Acero, A., Acharyya, R. Adam, A. Aguasca-Cabot, I. Agudo, A. Aguirre-Santaella, J., Alfaro, R. Alfaro, N. Alvarez-Crespo, R. Alves Batista, J.-P. Amans, E., Amato, E. O. Ang\"uner, L. A. Antonelli, C. Aramo, M. Araya

TL;DR
This paper evaluates the Cherenkov Telescope Array's potential to detect gamma-ray signals from the Perseus galaxy cluster, focusing on dark matter and cosmic-ray protons, and discusses expected sensitivities and constraints.
Contribution
It provides detailed spatial and spectral modeling of gamma-ray signals from dark matter and cosmic-ray protons in Perseus, estimating CTA's sensitivity and potential to constrain these components.
Findings
CTA can constrain the CRp to thermal energy ratio to below 3×10⁻³.
CTA can measure the CRp spectral index with an accuracy of about 0.1.
CTA can improve dark matter annihilation cross-section limits by up to a factor of 5.
Abstract
Galaxy clusters are expected to be dark matter (DM) reservoirs and storage rooms for the cosmic-ray protons (CRp) that accumulate along the cluster's formation history. Accordingly, they are excellent targets to search for signals of DM annihilation and decay at gamma-ray energies and are predicted to be sources of large-scale gamma-ray emission due to hadronic interactions in the intracluster medium. We estimate the sensitivity of the Cherenkov Telescope Array (CTA) to detect diffuse gamma-ray emission from the Perseus galaxy cluster. We perform a detailed spatial and spectral modelling of the expected signal for the DM and the CRp components. For each, we compute the expected CTA sensitivity. The observing strategy of Perseus is also discussed. In the absence of a diffuse signal (non-detection), CTA should constrain the CRp to thermal energy ratio within the radius down to…
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