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Lateral distribution of muons in IceCube cosmic ray events

Title: Lateral distribution of muons in IceCube cosmic ray events
Authors: Abbasi, R; Abdou, Yasser; Ackermann, M; Adams, J; Aguilar, JA; Ahlers, M; Altmann, D; Andeen, K; Auffenberg, J; Bai, X; Baker, M; Barwick, SW; Baum, V; Bay, R; Beattie, K; Beatty, JJ; Bechet, S; Tjus, JB; Becker, KH; Bell, M; Benabderrahmane, ML; BenZvi, S; Berdermann, J; Berghaus, P; Berley, D; Bernardini, E; Bertrand, D; Besson, DZ; Bindig, D; Bissok, M; Blaufuss, E; Blumenthal, J; Boersma, DJ; Bohm, C; Bose, D; Boser, S; Botner, O; Brayeur, L; Brown, AM; Bruijn, R; Brunner, J; Buitink, S; Carson, Michael; Casey, J; Casier, M; Chirkin, D; Christy, B; Clevermann, F; Cohen, S; Cowen, DF; Silva, AHC; Danninger, M; Daughhetee, J; Davis, JC; De Clercq, C; Descamps, F; Desiati, P; De Vries-Uiterweerd, Garmt; DeYoung, T; Diaz-Velez, JC; Dreyer, J; Dumm, JP; Dunkman, M; Eagan, R; Eisch, J; Ellsworth, RW; Engdegard, O; Euler, S; Evenson, PA; Fadiran, O; Fazely, AR; Fedynitch, A; Feintzeig, J; Feusels, Tom; Filimonov, K; Finley, C; Fischer-Wasels, T; Flis, S; Franckowiak, A; Franke, R; Frantzen, K; Fuchs, T; Gaisser, TK; Gallagher, J; Gerhardt, L; Gladstone, L; Glusenkamp, T; Goldschmidt, A; Goodman, JA; Gora, D; Grant, D; Gross, A; Grullon, S; Gurtner, M; Ha, C; Haj Ismail, Abd Al Karim; Hallgren, A; Halzen, F; Hanson, K; Heereman, D; Heimann, P; Heinen, D; Helbing, K; Hellauer, R; Hickford, S; Hill, GC; Hoffman, KD; Hoffmann, R; Homeier, A; Hoshina, K; Huelsnitz, W; Hulth, PO; Hultqvist, K; Hussain, S; Ishihara, A; Jacobi, E; Jacobsen, J; Japaridze, GS; Jlelati, Ola; Kappes, A; Karg, T; Karle, A; Kiryluk, J; Kislat, F; Klas, J; Klein, SR; Kohne, JH; Kohnen, G; Kolanoski, H; Kopke, L; Kopper, C; Kopper, S; Koskinen, DJ; Kowalski, M; Krasberg, M; Kroll, G; Kunnen, J; Kurahashi, N; Kuwabara, T; Labare, Mathieu; Laihem, K; Landsman, H; Larson, MJ; Lauer, R; Lesiak-Bzdak, M; Lunemann, J; Madsen, J; Maruyama, R; Mase, K; Matis, HS; McNally, F; Meagher, K; Merck, M; Meszaros, P; Meures, T; Miarecki, S; Middell, E; Milke, N; Miller, J; Mohrmann, L; Montaruli, T; Morse, R; Movit, SM; Nahnhauer, R; Naumann, U; Nowicki, SC; Nygren, DR; Obertacke, A; Odrowski, S; Olivas, A; Olivo, M; O'Murchadha, A; Panknin, S; Paul, L; Pepper, JA; de los Heros, CP; Pieloth, D; Pirk, N; Posselt, J; Price, PB; Przybylski, GT; Radel, L; Rawlins, K; Redl, P; Resconi, E; Rhode, W; Ribordy, M; Richman, M; Riedel, B; Rodrigues, JP; Rothmaier, F; Rott, C; Ruhe, T; Ruzybayev, B; Ryckbosch, Dirk; Saba, SM; Salameh, T; Sander, HG; Santander, M; Sarkar, S; Schatto, K; Scheel, M; Scheriau, F; Schmidt, T; Schmitz, M; Schoenen, S; Schoneberg, S; Schonherr, L; Schonwald, A; Schukraft, A; Schulte, L; Schulz, O; Seckel, D; Seo, SH; Sestayo, Y; Seunarine, S; Smith, MWE; Soiron, M; Soldin, D; Spiczak, GM; Spiering, C; Stamatikos, M; Stanev, T; Stasik, A; Stezelberger, T; Stokstad, RG; Stossl, A; Strahler, EA; Strom, R; Sullivan, GW; Taavola, H; Taboada, I; Tamburro, A; Ter-Antonyan, S; Tilav, S; Toale, PA; Toscano, S; Usner, M; van der Drift, D; van Eijndhoven, N; Van Overloop, Arne; van Santen, J; Vehring, M; Voge, M; Walck, C; Waldenmaier, T; Wallraff, M; Walter, M; Wasserman, R; Weaver, C; Wendt, C; Westerhoff, S; Whitehorn, N; Wiebe, K; Wiebusch, CH; Williams, DR; Wissing, H; Wolf, M; Wood, TR; Woschnagg, K; Xu, C; Xu, DL; Xu, XW; Yanez, JP; Yodh, G; Yoshida, S; Zarzhitsky, P; Ziemann, J; Zilles, A; Zoll, M
Source: PHYSICAL REVIEW D ; ISSN: 1550-7998
Publication Year: 2013
Collection: Ghent University Academic Bibliography
Subject Terms: Physics and Astronomy; ENERGIES; GLUON; TEV; MODEL
Description: In cosmic ray air showers, the muon lateral separation from the center of the shower is a measure of the transverse momentum that the muon parent acquired in the cosmic ray interaction. IceCube has observed cosmic ray interactions that produce muons laterally separated by up to 400 m from the shower core, a factor of 6 larger distance than previous measurements. These muons originate in high p(T) (> 2 GeV/c) interactions from the incident cosmic ray, or high-energy secondary interactions. The separation distribution shows a transition to a power law at large values, indicating the presence of a hard p(T) component that can be described by perturbative quantum chromodynamics. However, the rates and the zenith angle distributions of these events are not well reproduced with the cosmic ray models tested here, even those that include charm interactions. This discrepancy may be explained by a larger fraction of kaons and charmed particles than is currently incorporated in the simulations.
Document Type: article in journal/newspaper
File Description: application/pdf
Language: English
Relation: https://biblio.ugent.be/publication/3247182; https://doi.org/10.1103/PhysRevD.87.012005; https://biblio.ugent.be/publication/3247182/file/3250926
DOI: 10.1103/PhysRevD.87.012005
Availability: https://biblio.ugent.be/publication/3247182; https://hdl.handle.net/1854/LU-3247182; https://doi.org/10.1103/PhysRevD.87.012005; https://biblio.ugent.be/publication/3247182/file/3250926
Rights: info:eu-repo/semantics/openAccess
Accession Number: edsbas.6304F4DC
Database: BASE