Direct measurement of the muonic content of extensive air showers between 2× 1017 and 2×1018 eV at the Pierre Auger Observatory

A. Aab,P. Abreu,Marco Aglietta,Justin M. Albury,I. Allekotte,Alejandro Almela,J. Alvarez Castillo,Jaime Alvarez-Muñiz,Gioacchino Alex Anastasi,Luis A. Anchordoqui, B. Andrada,Sofia Andringa,Carla Aramo,P.R. Araújo Ferreira,Hernán Asorey,Pedro Assis,Gualberto Avila,Alina Mihaela Badescu,Alena Bakalova, Alexandru Balaceanu,F. C. T. Barbato,R.J. Barreira Luz, K.-H. Becker,Jose A. Bellido,Corinne Berat, M. E. Bertaina,Xavier Bertou,Peter L. Biermann,Teresa Bister,Jonathan Biteau,A. Blanco, Jonathan Blazek,Carla Bleve,Martina Bohacova,Denise Boncioli,Carla Bonifazi,L. Bonneau Arbeletche,Nataliia Borodai,A. M. Botti, Jeffrey Brack, Thomas Bretz,Florian Lukas Briechle,Peter Buchholz,Antonio Bueno,Stijn Buitink,Mario Buscemi,Karen S. Caballero-Mora,Lorenzo Caccianiga,L. Calcagni,A. Cancio,Fabrizia Canfora,Ioana Caracas,Juan Miguel Carceller,Rossella Caruso,Antonella Castellina,Fernando Catalani,G. Cataldi,Lorenzo Cazon,Marcos Cerda,Jose Chinellato,K. Choi,J. Chudoba,Ladislav Chytka,Roger W Clay,A.C. Cobos Cerutti,Roberta Colalillo,Alan Coleman,Maria Rita Coluccia,R. Conceição,Antonio Condorelli,Giovanni Consolati,Fernando Contreras,Fabio Convenga,Corbin Covault,Sergio Dasso,Kai Daumiller,Bruce R. Dawson,Jarryd A. Day,R. M. de Almeida,J. de Jesús,S. J. De Jong,G. De Mauro,J. R. T. de Mello Neto,I. De Mitri,J. de Oliveira,D. de Oliveira Franco,V. de Souza,J. Debatin,M. del Río,Olivier Deligny,Niraj Dhital, A. Di Matteo,M. L. Díaz Castro,Carola Dobrigkeit,Juan Carlos D'Olivo, Q. Dorosti,R.C. dos Anjos

European Physical Journal C(2020)

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摘要
The hybrid design of the Pierre Auger Observatory allows for the measurement of the properties of extensive air showers initiated by ultra-high energy cosmic rays with unprecedented precision. By using an array of prototype underground muon detectors, we have performed the first direct measurement, by the Auger Collaboration, of the muon content of air showers between 2 × 10 17 and 2 × 10 18 eV. We have studied the energy evolution of the attenuation-corrected muon density, and compared it to predictions from air shower simulations. The observed densities are found to be larger than those predicted by models. We quantify this discrepancy by combining the measurements from the muon detector with those from the Auger fluorescence detector at 1017.5eV and 1018eV. We find that, for the models to explain the data, an increase in the muon density of 38 % ± 4 % (12 %) ±18%21% for EPOS-LHC, and of 50 % (53 %) ± 4 % (13 %) ±20%23% for QGSJetII-04, is respectively needed.
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