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Auteurs principaux: Volkov, V., Golubeva, M., Guber, F., Izvestnyy, A., Karpushkin, N., Mamaev, M., Makhnev, A., Morozov, S., Parfenov, P.
Format: Preprint
Publié: 2024
Sujets:
Accès en ligne:https://arxiv.org/abs/2411.14187
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author Volkov, V.
Golubeva, M.
Guber, F.
Izvestnyy, A.
Karpushkin, N.
Mamaev, M.
Makhnev, A.
Morozov, S.
Parfenov, P.
author_facet Volkov, V.
Golubeva, M.
Guber, F.
Izvestnyy, A.
Karpushkin, N.
Mamaev, M.
Makhnev, A.
Morozov, S.
Parfenov, P.
contents The performance of the scintillation wall (ScWall) has been studied in the first physics run at the Baryonic Matter at Nuclotron (BM@N) in Xe+CsI reaction at a xenon beam energy of 3.8 and 3.0 AGeV. The design and functionality of the ScWall emphasizing its ability to detect charged spectator fragments produced in nucleus-nucleus interactions are shown. The simulation results regarding ScWall's capability to determine collision geometry and the comparison between measured and simulated charged spectators fragments spectra are discussed.
format Preprint
id arxiv_https___arxiv_org_abs_2411_14187
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Performance of the Scintillation Wall in the BM@N experiment
Volkov, V.
Golubeva, M.
Guber, F.
Izvestnyy, A.
Karpushkin, N.
Mamaev, M.
Makhnev, A.
Morozov, S.
Parfenov, P.
High Energy Physics - Experiment
The performance of the scintillation wall (ScWall) has been studied in the first physics run at the Baryonic Matter at Nuclotron (BM@N) in Xe+CsI reaction at a xenon beam energy of 3.8 and 3.0 AGeV. The design and functionality of the ScWall emphasizing its ability to detect charged spectator fragments produced in nucleus-nucleus interactions are shown. The simulation results regarding ScWall's capability to determine collision geometry and the comparison between measured and simulated charged spectators fragments spectra are discussed.
title Performance of the Scintillation Wall in the BM@N experiment
topic High Energy Physics - Experiment
url https://arxiv.org/abs/2411.14187