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Demonstrating Agreement between Radio and Fluorescence Measurements of the Depth of Maximum of Extensive Air Showers at the Pierre Auger Observatory.

Authors :
Abdul Halim A
Abreu P
Aglietta M
Allekotte I
Cheminant KA
Almela A
Aloisio R
Alvarez-Muñiz J
Yebra JA
Anastasi GA
Anchordoqui L
Andrada B
Andringa S
Anukriti
Apollonio L
Aramo C
Ferreira PRA
Arnone E
Velázquez JCA
Assis P
Avila G
Avocone E
Bakalova A
Barbato F
Mocellin AB
Bellido JA
Berat C
Bertaina ME
Bhatta G
Bianciotto M
Biermann PL
Binet V
Bismark K
Bister T
Biteau J
Blazek J
Bleve C
Blümer J
Boháčová M
Boncioli D
Bonifazi C
Arbeletche LB
Borodai N
Brack J
Orchera PGB
Briechle FL
Bueno A
Buitink S
Buscemi M
Büsken M
Bwembya A
Caballero-Mora KS
Cabana-Freire S
Caccianiga L
Caruso R
Castellina A
Catalani F
Cataldi G
Cazon L
Cerda M
Cermenati A
Chinellato JA
Chudoba J
Chytka L
Clay RW
Cerutti ACC
Colalillo R
Coleman A
Coluccia MR
Conceição R
Condorelli A
Consolati G
Conte M
Convenga F
Dos Santos DC
Costa PJ
Covault CE
Cristinziani M
Sanchez CSC
Dasso S
Daumiller K
Dawson BR
de Almeida RM
de Jesús J
de Jong SJ
Neto JRTM
De Mitri I
de Oliveira J
Franco DO
de Palma F
de Souza V
de Errico BPS
De Vito E
Del Popolo A
Deligny O
Denner N
Deval L
di Matteo A
Dobre M
Dobrigkeit C
D'Olivo JC
Mendes LMD
Dorosti Q
Dos Anjos JC
Dos Anjos RC
Ebr J
Ellwanger F
Emam M
Engel R
Epicoco I
Erdmann M
Etchegoyen A
Evoli C
Falcke H
Farmer J
Farrar G
Fauth AC
Fazzini N
Feldbusch F
Fenu F
Fernandes A
Fick B
Figueira JM
Filipčič A
Fitoussi T
Flaggs B
Fodran T
Fujii T
Fuster A
Galea C
Galelli C
García B
Gaudu C
Gemmeke H
Gesualdi F
Gherghel-Lascu A
Ghia PL
Giaccari U
Glombitza J
Gobbi F
Gollan F
Golup G
Berisso MG
Vitale PFG
Gongora JP
González JM
González N
Goos I
Góra D
Gorgi A
Gottowik M
Grubb TD
Guarino F
Guedes GP
Guido E
Gülzow L
Hahn S
Hamal P
Hampel MR
Hansen P
Harari D
Harvey VM
Haungs A
Hebbeker T
Hojvat C
Hörandel JR
Horvath P
Hrabovský M
Huege T
Insolia A
Isar PG
Janecek P
Jilek V
Johnsen JA
Jurysek J
Kampert KH
Keilhauer B
Khakurdikar A
Covilakam VVK
Klages HO
Kleifges M
Knapp F
Köhler J
Kunka N
Lago BL
Langner N
de Oliveira MAL
Lema-Capeans Y
Letessier-Selvon A
Lhenry-Yvon I
Lopes L
Lu L
Luce Q
Lundquist JP
Payeras AM
Majercakova M
Mandat D
Manning BC
Mantsch P
Marafico S
Mariani FM
Mariazzi AG
Mariş IC
Marsella G
Martello D
Martinelli S
Bravo OM
Martins MA
Mathes HJ
Matthews J
Matthiae G
Mayotte E
Mayotte S
Mazur PO
Medina-Tanco G
Meinert J
Melo D
Menshikov A
Merx C
Michal S
Micheletti MI
Miramonti L
Mollerach S
Montanet F
Morejon L
Morello C
Mulrey K
Mussa R
Namasaka WM
Negi S
Nellen L
Nguyen K
Nicora G
Niechciol M
Nitz D
Nosek D
Novotny V
Nožka L
Nucita A
Núñez LA
Oliveira C
Palatka M
Pallotta J
Panja S
Parente G
Paulsen T
Pawlowsky J
Pech M
Pękala J
Pelayo R
Pereira LAS
Martins EEP
Armand JP
Bertolli CP
Perrone L
Petrera S
Petrucci C
Pierog T
Pimenta M
Platino M
Pont B
Pothast M
Shahvar MP
Privitera P
Prouza M
Puyleart A
Querchfeld S
Rautenberg J
Ravignani D
Akim JVR
Reininghaus M
Ridky J
Riehn F
Risse M
Rizi V
de Carvalho WR
Rodriguez E
Rojo JR
Roncoroni MJ
Rossoni S
Roth M
Roulet E
Rovero AC
Ruehl P
Saftoiu A
Saharan M
Salamida F
Salazar H
Salina G
Gomez JDS
Sánchez F
Santos EM
Santos E
Sarazin F
Sarmento R
Sato R
Savina P
Schäfer CM
Scherini V
Schieler H
Schimassek M
Schimp M
Schmidt D
Scholten O
Schoorlemmer H
Schovánek P
Schröder FG
Schulte J
Schulz T
Sciutto SJ
Scornavacche M
Segreto A
Sehgal S
Shivashankara SU
Sigl G
Silli G
Sima O
Simkova K
Simon F
Smau R
Šmída R
Sommers P
Soriano JF
Squartini R
Stadelmaier M
Stanič S
Stasielak J
Stassi P
Strähnz S
Straub M
Suomijärvi T
Supanitsky AD
Svozilikova Z
Szadkowski Z
Tairli F
Tapia A
Taricco C
Timmermans C
Tkachenko O
Tobiska P
Peixoto CJT
Tomé B
Torrès Z
Travaini A
Travnicek P
Trimarelli C
Tueros M
Unger M
Vaclavek L
Vacula M
Galicia JFV
Valore L
Varela E
Vásquez-Ramírez A
Veberič D
Ventura C
Quispe IDV
Verzi V
Vicha J
Vink J
Vorobiov S
Watanabe C
Watson AA
Weindl A
Wiencke L
Wilczyński H
Wittkowski D
Wundheiler B
Yue B
Yushkov A
Zapparrata O
Zas E
Zavrtanik D
Zavrtanik M
Source :
Physical review letters [Phys Rev Lett] 2024 Jan 12; Vol. 132 (2), pp. 021001.
Publication Year :
2024

Abstract

We show, for the first time, radio measurements of the depth of shower maximum (X_{max}) of air showers induced by cosmic rays that are compared to measurements of the established fluorescence method at the same location. Using measurements at the Pierre Auger Observatory we show full compatibility between our radio and the previously published fluorescence dataset, and between a subset of air showers observed simultaneously with both radio and fluorescence techniques, a measurement setup unique to the Pierre Auger Observatory. Furthermore, we show radio X_{max} resolution as a function of energy and demonstrate the ability to make competitive high-resolution X_{max} measurements with even a sparse radio array. With this, we show that the radio technique is capable of cosmic-ray mass composition studies, both at Auger and at other experiments.

Details

Language :
English
ISSN :
1079-7114
Volume :
132
Issue :
2
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
38277596
Full Text :
https://doi.org/10.1103/PhysRevLett.132.021001