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Belyaev, A.; Blanco, A.; Blume, C.; Charlotte, C.; Borisenko, D. S.; Chlad, L.; Chudoba, P.; Derichs, A.; Dittert, D.; Dreyer, J.; Esmail, W.; Fateev, O.; Fonte, P.; Friese, J.; Fröhlich, I.; Förtsch, J.; Galatyuk, T.; Golosov, O.; Golubeva, M.; Greifenhagen, R.; Grunwald, M.; Grzonka, D.; Guber, F.; Harabasz, S.; Heinz, T.; Heybeck, B.; Holzmann, R.; Huck, H.; Ierusalimov, A.; Imre, M.; Ivashkin, A.; Kämpfer, B.; Kedych, V.; Kohls, M.; Kotte, R.; Kozela, A.; Kugler, A.; Kulessa, P.; Ladygin, V.; Lalik, R.; Le Galliard, C.; Lebedev, A.; Linev, S.; Lopes, L.; Lorenz, M.; Malige, A.; Markert, J.; Matulewicz, T.; Michel, J.; Morozov, S.; Müntz, C.; Naumann, L.; Nowakowski, K.; Orfanitsky, S.; Otto, J. -H.; Patel, V.; Pechenov, V.; Perez Andrade, G.; Petukhov, O.; Pfeifer, D.; Piasecki, K.; Pietraszko, J.; Prozorov, A.; Przygoda, W.; Pysz, K.; Ramstein, B.; Rathod, N.; Regina, J.; Reshetin, A.; Reznikov, S.; Ritman, J.; Rodriguez-Ramos, P.; Rost, A.; Rustamov, A.; Salabura, P.; Saraiva, J.; Schild, N.; Schwab, E.; Seck, F.; Selyuzhenkov, I.; Shabanov, A.; Smyrski, J.; Spies, S.; Strikhanov, M.; Ströbele, H.; Stroth, J.; Sumara, K.; Svoboda, O.; Szala, M.; Szewczyk, J.; Taranenko, A.; Wagner, V.; Wasiluk, M.; Wendisch, C.; Wintz, P.; Włoch, B.; Zbroszczyk, H. P.; Zherebzova, E.; Zhilin, A.; Zumbruch, P.
The European physical journal. A, Hadrons and nuclei, 04/2021, Volume: 57, Issue: 4Journal Article
A feasibility study has been performed in order to investigate the performance of the HADES detector to measure the electromagnetic decays of the hyperon resonances Σ ( 1385 ) 0 , Λ ( 1405 ) and Λ ( 1520 ) as well as the production of double strange baryon systems Ξ - and Λ Λ in p + p reactions at a beam kinetic energy of 4.5 GeV . The existing HADES detector will be upgraded by a new Forward Detector, which extends the detector acceptance into a range of polar angles that plays a crucial role for these investigations. The analysis of each channel is preceded by a consideration of the production cross-sections. Afterwards the expected signal count rates using a target consisting of either liquid hydrogen or polyethylene are summarized.
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