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Hadron cascades in CORSIKA 8

Authors :
Dieter Heck
David Parello
Enrique Zas
Hannah Elfner
Maria Pokrandt
André Schmidt
Jean-Marco Alameddine
Anatoli Fedynitch
R. Engel
Dominik Elsässer
Tanguy Pierog
Luisa Arrabito
Matthieu Carrere
Michael Schmelling
Karl-Heinz Kampert
Maximilian Reininghaus
Jaime Alvarez-Muñiz
Fan Hu
Johannes Albrecht
Alexander Sandrock
Hans Peter Dembinski
Tim Huege
Johan Bregeon
Günter Sigl
Wolfgang Rhode
Juan Ammerman-Yebra
Donglian Xu
Nikolaos Karastathis
Antonio Augusto Alves Jr.
Bernhard Spaan
Ralf Ulrich
Maximilian Sackel
Lukas Nellen
Jan Soedingrekso
Anton Poctarev
Pranav Sampathkumar
Felix Riehn
Remy Prechelt
Maximilian Nöthe
Marcus Bleicher
Konrad Bernlöhr
Dominik Baack
Source :
Proceedings of Science
Publication Year :
2021
Publisher :
Sissa Medialab, 2021.

Abstract

We present characteristics of hadronic cascades from interactions of cosmic rays in the atmosphere, simulated by the novel CORSIKA 8 framework. The simulated spectra of secondaries, such as pions, kaons, baryons and muons, are compared with the cascade equations solvers MCEq in air shower mode, and full 3D air shower Monte Carlo simulations using the legacy CORSIKA 7. A novel capability of CORSIKA 8 is the simulation of cascades in media other than air, widening the scope of potential applications. We demonstrate this by simulating cosmic ray showers in the Mars atmosphere, as well as simulating a shower traversing from air into water. The CORSIKA 8 framework demonstrates good accuracy and robustness in comparison with previous results, in particular in those relevant for the production of muons in air showers. Furthermore, the impact of forward $\rho^0$ production on air showers is studied and illustrated.

Details

ISSN :
18248039
Database :
OpenAIRE
Journal :
Proceedings of 37th International Cosmic Ray Conference — PoS(ICRC2021)
Accession number :
edsair.doi.dedup.....71b248be0cf0756b5ff978990b712f4a
Full Text :
https://doi.org/10.22323/1.395.0474