Monte Carlo Simulations of the ISS-CREAM Instrument

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초록

Cosmic Ray Energetics and Mass for the International Space Station (ISS-CREAM) is designed to directly measure the energy spectra of high-energy cosmic rays, encompassing proton to iron nuclei, over the energy range from 10(12) to 10(15) eV [1]. The capability to measure an extended energy range enables us to probe the origin and acceleration mechanisms of cosmic rays. The ISS-CREAM instrument is configured with the balloon-borne CREAM calorimeter (CAL) for energy measurements and four layers of a finely segmented Silicon Charge Detector (SCD) for charge measurements. In addition, two new compact detectors have been developed for electron/proton separation: Top and Bottom scintillator-based counting detectors (TCD/BCD) and a boronated scintillator detector (BSD). Simulations use the GEANT3 package [2] with the FLUKA hadronic model [3]. An isotropic event generator was developed for the ISS-CREAM geometry with particles incident from the upper hemisphere. We will present simulation results regarding ISS-CREAM performance, including trigger rates, energy resolution, energy response, tracking resolution, charge efficiency, etc.

제목
Monte Carlo Simulations of the ISS-CREAM Instrument
저자
Wu, J.; Amare, Y.; Angelaszek, D.; Anthony, N.; Choi, G. H.; Chung, M.; Copley, M.; Derome, L.; Eraud, L.; Falana, C.; Gerrety, A.; Hagenau, L.; Han, J. H.; Huh, H. G.; Hwang, Y. S.; Hyun, H. J.; Jeon, H. B.; Jeon, J. A.; Jeong, S.; Kang, S. C.; Kim, H. J.; Kim, K. C.; Kim, M. H.; Lee, H. Y.; Lee, J.; Lee, M. H.; Lamb, C.; Liang, J.; Lu, L.; Lundquist, J. P.; Lutz, L.; Mark, B.; Menchaca-Rocha, A.; Mernik, T.; Nester, M.; Ofoha, O.; Park, H.; Park, I. H.; Park, J. M.; Picot-Clemente, N.; Rostsky, S.; Seo, E. S.; Smith, J. R.; Takeishi, R.; Tatoli, T.; Walpole, P.; Weinmann, R. P.; Yin, Z.; Yoon, Y. S.; Zhang, H. G.
발행일
2021
유형
Proceedings Paper
저널명
36TH INTERNATIONAL COSMIC RAY CONFERENCE, ICRC2019