학술논문

Performances of JEM-EUSO: angular reconstruction: The JEM-EUSO Collaboration
Document Type
Original Paper
Author
Adams, Jr., J. H.Ahmad, S.Albert, J. -N.Allard, D.Anchordoqui, L.Andreev, V.Anzalone, A.Arai, Y.Asano, K.Ave Pernas, M.Baragatti, P.Barrillon, P.Batsch, T.Bayer, J.Bechini, R.Belenguer, T.Bellotti, R.Belov, K.Berlind, A. A.Bertaina, M.Biermann, P. L.Biktemerova, S.Blaksley, C.Blanc, N.Błȩcki, J.Blin-Bondil, S.Blümer, J.Bobik, P.Bogomilov, M.Bonamente, M.Briggs, M. S.Briz, S.Bruno, A.Cafagna, F.Campana, D.Capdevielle, J. -N.Caruso, R.Casolino, M.Cassardo, C.Castellinic, G.Catalano, C.Catalano, G.Cellino, A.Chikawa, M.Christl, M. J.Cline, D.Connaughton, V.Conti, L.Cordero, G.Crawford, H. J.Cremonini, R.Csorna, S.Dagoret-Campagne, S.de Castro, A. J.De Donato, C.de la Taille, C.De Santis, C.del Peral, L.Dell’Oro, A.De Simone, N.Di Martino, M.Distratis, G.Dulucq, F.Dupieux, M.Ebersoldt, A.Ebisuzaki, T.Engel, R.Falk, S.Fang, K.Fenu, F.Fernández-Gómez, I.Ferrarese, S.Finco, D.Flamini, M.Fornaro, C.Franceschi, A.Fujimoto, J.Fukushima, M.Galeotti, P.Garipov, G.Geary, J.Gelmini, G.Giraudo, G.Gonchar, M.González Alvarado, C.Gorodetzky, P.Guarino, F.Guzmán, A.Hachisu, Y.Harlov, B.Haungs, A.Hernández Carretero, J.Higashide, K.Ikeda, D.Ikeda, H.Inoue, N.Inoue, S.Insolia, A.Isgrò, F.Itow, Y.Joven, E.Judd, E. G.Jung, A.Kajino, F.Kajino, T.Kaneko, I.Karadzhov, Y.Karczmarczyk, J.Karus, M.Katahira, K.Kawai, K.Kawasaki, Y.Keilhauer, B.Khrenov, B. A.Kim, J. -S.Kim, S. -W.Kim, S. -W.Kleifges, M.Klimov, P. A.Kolev, D.Kreykenbohm, I.Kudela, K.Kurihara, Y.Kusenko, A.Kuznetsov, E.Lacombe, M.Lachaud, C.Lee, J.Licandro, J.Lim, H.López, F.Maccarone, M. C.Mannheim, K.Maravilla, D.Marcelli, L.Marini, A.Martinez, O.Masciantonio, G.Mase, K.Matev, R.Medina-Tanco, G.Mernik, T.Miyamoto, H.Miyazaki, Y.Mizumoto, Y.Modestino, G.Monaco, A.Monnier-Ragaigne, D.Morales de los Ríos, J. A.Moretto, C.Morozenko, V. S.Mot, B.Murakami, T.Murakami, M. NaganoNagata, M.Nagataki, S.Nakamura, T.Napolitano, T.Naumov, D.Nava, R.Neronov, A.Nomoto, K.Nonaka, T.Ogawa, T.Ogio, S.Ohmori, H.Olinto, A. V.Orleański, P.Osteria, G.Panasyuk, M. I.Parizot, E.Park, I. H.Park, H. W.Pastircak, B.Patzak, T.Paul, T.Pennypacker, C.Perez Cano, S.Peter, T.Picozza, P.Pierog, T.Piotrowski, L. W.Piraino, S.Plebaniak, Z.Pollini, A.Prat, P.Prévôt, G.Prieto, H.Putis, M.Reardon, P.Reyes, M.Ricci, M.Rodríguez, I.Rodríguez Frías, M. D.Ronga, F.Roth, M.Rothkaehl, H.Roudil, G.Rusinov, I.Rybczyński, M.Sabau, M. D.Sáez-Cano, G.Sagawa, H.Saito, A.Sakaki, N.Sakata, M.Salazar, H.Sánchez, S.Santangelo, A.Santiago Crúz, L.Sanz Palomino, M.Saprykin, O.Sarazin, F.Sato, H.Sato, M.Schanz, T.Schieler, H.Scotti, V.Segreto, A.Selmane, S.Semikoz, D.Serra, M.Sharakin, S.Shibata, T.Shimizu, H. M.Shinozaki, K.Shirahama, T.Siemieniec-Oziȩbło, G.Silva López, H. H.Sledd, J.Słomińska, K.Sobey, A.Sugiyama, T.Supanitsky, D.Suzuki, M.Szabelska, B.Szabelski, J.Tajima, F.Tajima, N.Tajima, T.Takahashi, Y.Takami, H.Takeda, M.Takizawa, Y.Tenzer, C.Tibolla, O.Tkachev, L.Tokuno, H.Tomida, T.Tone, N.Toscano, S.Trillaud, F.Tsenov, R.Tsunesada, Y.Tsuno, K.Tymieniecka, T.Uchihori, Y.Unger, M.Vaduvescu, O.Valdés-Galicia, J. F.Vallania, P.Valore, L.Vankova, G.Vigorito, C.Villaseñor, L.von Ballmoos, P.Wada, S.Watanabe, J.Watanabe, S.Watts, Jr, J.Weber, M.Weiler, T. J.Wibig, T.Wiencke, L.Wille, M.Wilms, J.Włodarczyk, Z.Yamamoto, T.Yamamoto, Y.Yang, J.Yano, H.Yashin, I. V.Yonetoku, D.Yoshida, K.Yoshida, S.Young, R.Zotov, M. Yu.Zuccaro Marchi, A.The JEM-EUSO Collaboration
Source
Experimental Astronomy: Astrophysical Instrumentation and Methods. November 2015 40(1):153-177
Subject
JEM-EUSO
Angular reconstruction
Language
English
ISSN
0922-6435
1572-9508
Abstract
Mounted on the International Space Station(ISS), the Extreme Universe Space Observatory, on-board the Japanese Experimental Module (JEM-EUSO), relies on the well established fluorescence technique to observe Extensive Air Showers (EAS) developing in the earth’s atmosphere. Focusing on the detection of Ultra High Energy Cosmic Rays (UHECR) in the decade of 1020eV, JEM-EUSO will face new challenges by applying this technique from space. The EUSO Simulation and Analysis Framework (ESAF) has been developed in this context to provide a full end-to-end simulation frame, and assess the overall performance of the detector. Within ESAF, angular reconstruction can be separated into two conceptually different steps. The first step is pattern recognition, or filtering, of the signal to separate it from the background. The second step is to perform different types of fitting in order to search for the relevant geometrical parameters that best describe the previously selected signal. In this paper, we discuss some of the techniques we have implemented in ESAF to perform the geometrical reconstruction of EAS seen by JEM-EUSO. We also conduct thorough tests to assess the performances of these techniques in conditions which are relevant to the scope of the JEM-EUSO mission. We conclude by showing the expected angular resolution in the energy range that JEM-EUSO is expected to observe.