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Calibration and Performance of the Surface Scintillator Detector of the Pierre Auger Observatory

Matteo ConteAdila Abdul HalimP. AbreuLaboratório de Instrumentação e Física Experimental de Partículas -LIP and Instituto Superior Técnico -IST , Universidade de Lisboa -UL , Lisboa , PortugalM. AgliettaI. AllekotteKévin Almeida CheminantIMAPP , Radboud University Nijmegen , Nijmegen , The NetherlandsAlejandro AlmelaRoberto AloisioJaime Álvarez-MuñizInstituto Galego de Física de Altas Enerxías (IGFAE) , Universidade de Santiago de Compostela , Santiago de Com- postela , SpainAntonio AmbrosoneJuan Ammerman YebraInstituto Galego de Física de Altas Enerxías (IGFAE) , Universidade de Santiago de Compostela , Santiago de Com- postela , SpainGioacchino Alex AnastasiL. AnchordoquiDepartment of Physics and Astronomy , Lehman College , City University of New York , Bronx , NY , USABelén AndradaLuciana Andrade DouradoS. AndringaLaboratório de Instrumentação e Física Experimental de Partículas -LIP and Instituto Superior Técnico -IST , Universidade de Lisboa -UL , Lisboa , PortugalL. ApollonioCarla AramoE. ArnoneUniversità Torino , Dipartimento di Fisica , Torino , ItalyJuan Carlos Arteaga VelázquezUniversidad Michoacana de San Nicolás de Hidalgo , Morelia , Michoacán , MéxicoP. AssisLaboratório de Instrumentação e Física Experimental de Partículas -LIP and Instituto Superior Técnico -IST , Universidade de Lisboa -UL , Lisboa , PortugalGualberto AvilaEmanuele AvoconeAlena BakalováFelicia BarbatoAdriel Bartz MocellinColorado School of Mines , Golden , CO , USAJose A. BellidoCorinne BératMario E. BertainaUniversità Torino , Dipartimento di Fisica , Torino , ItalyMarta BianciottoUniversità Torino , Dipartimento di Fisica , Torino , ItalyPeter L. BiermannVirginia BinetKathrin BismarkTeresa BisterIMAPP , Radboud University Nijmegen , Nijmegen , The NetherlandsJ. BiteauJiří BlažekJohannes BlümerMartina BoháčováDenise BoncioliC. BonifaziNataliia BorodaiInstitute of Nuclear Physics PAN , Krakow , PolandJ. BrackP. Gabriel Brichetto OrcheraFlorian Lukas BriechleAntonio BuenoUniversidad de Granada and C.A.F.P .E. , Granada , SpainS. BuitinkMario BuscemiMax BüskenAnthony BwembyaIMAPP , Radboud University Nijmegen , Nijmegen , The NetherlandsK. S. Caballero‐MoraUniversidad Autónoma de Chiapas , Tuxtla Gutiérrez , Chiapas , MéxicoSergio Cabana-FreireLorenzo CaccianigaInstituto Galego de Física de Altas Enerxías (IGFAE) , Universidade de Santiago de Compostela , Santiago de Com- postela , SpainFederico CampuzanoJorge Caraça-ValenteColorado School of Mines , Golden , CO , USAR. CarusoAntonella CastellinaF. CatalaniG. CataldiLorenzo CazonMarcos CerdaBerenika ČermákováAlessandro CermenatiC. DobrigkeitJ. ChudobaL. ChytkaRoger W ClayAgustín Cobos CeruttiRoberta ColalilloR. ConceiçãoLaboratório de Instrumentação e Física Experimental de Partículas -LIP and Instituto Superior Técnico -IST , Universidade de Lisboa -UL , Lisboa , PortugalGiovanni ConsolatiFabio ConvengaDiego Correia dos SantosPedro J. CostaC. E. CovaultCase Western Reserve University , Cleveland , OH , USAM. CristinzianiCarlo Salvattore Cruz SanchezS. DassoK. DaumillerB. R. DawsonRogerio M. de AlmeidaEric-Teunis de BooneBeatriz de ErricoJoaquín de JesúsS. J. de JongJoão de Mello NetoI. De MitriJaime de OliveiraDanelise de Oliveira FrancoFrancesco de PalmaVitor de SouzaEmanuele De VitoA. Del PopoloOlivier DelignyNikolas DennerLuca DevalA. di MatteoC. DobrigkeitJuan Carlos D'OlivoUniversidad Nacional Autónoma de México , México , D.F. , MéxicoLuis Miguel Domingues Mendes
2025en
ABI

Abstract

The Pierre Auger Observatory has led to significant advances in our understanding of ultra- high-energy cosmic rays. These new insights have driven a major upgrade of the Observatory, known as AugerPrime, through which the experiment has entered its Phase II, a new period of data collection. A key part of the upgrade is adding surface scintillator detectors (SSD) on top of the existing water-Cherenkov detectors (WCD). The main goal is to leverage their different responses to the electromagnetic and muonic shower components, enhancing the reconstruction of the primary cosmic-ray mass. In this contribution, we present the methods that involve analyzing peak and charge distributions of atmospheric muons for accurate calibration during extensive air-shower event reconstruction, along with the development of a rate-based algorithm for independent calibration. We also show the performance of the SSDs with Phase-II data, including PMT reliability and stability of key parameters, such as gain and signal-to-noise ratio.

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Cited by 10 references