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February 27, 20260 citationsOpen Access

Measuring the muon content of inclined air showers using AERA and the water-Cherenkov detectors of the Pierre Auger Observatory

PCPierre Auger CollaborationAHA. Abdul HalimPAP. Abreu

Key Points

  • The research aims to measure the muon content of inclined air showers using combined radio and particle detection methods.
  • Utilized radio emission data from the Auger engineering radio array (AERA) for energy estimation.
  • Analyzed muon numbers using the water-Cherenkov detector array on a 1500 m grid.
  • Focused on air showers with primary energy above 4 EeV for detection efficiency.
  • Studied 40 high-quality events accumulated over approximately ten years.
  • Estimated muon contents in data align with predictions for iron primaries from hadronic interaction models.
  • Identified a muon deficit that supports the lighter mass composition established from 𝑋$_{max}$ measurements.
  • Confirmed previous findings from Auger Collaboration using hybrid events incorporating radio measurements for the first time.

Abstract

We present a novel approach for assessing the muon content of air showers with large zenith angles on a combined analysis of their radio emission and particle footprint. We use the radiation energy reconstructed by the Auger engineering radio array (AERA) as an energy estimator and determine the muon number independently with the water-Cherenkov detector array of the Pierre Auger Observatory, deployed on a 1500 m grid. We focus our analysis on air showers with primary energy above 4 EeV to ensure full detection efficiency. Over approximately ten years of accumulated data, we identify a set of 40 high-quality events that are used in the analysis. The estimated muon contents in data are compatible with those for iron primaries as predicted by current-generation hadronic interaction models. This result can be interpreted as a deficit of muons in simulations as a lighter mass composition has been established from 𝑋₌₀ₗ measurements. This muon deficit was already observed in previous analyses of the Auger Collaboration and is confirmed using hybrid events that include radio measurements for the first time.

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Cite This Study

Collaboration et al. (2025) studied this question.

synapsesocial.com/papers/69a1355fed1d949a99abf290https://doi.org/10.5445/ir/1000190968
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