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Suppression of neutral-pion production in deep-inelastic scattering off nuclei with the CLAS detector

Articolo
Data di Pubblicazione:
2025
Abstract:
We present the first threefold differential measurement for neutral-pion multiplicity ratios produced in semi-inclusive deep-inelastic electron scattering on carbon, iron, and lead nuclei normalized to deuterium from CLAS at Jefferson Lab. We found that the neutral-pion multiplicity ratio is maximally suppressed for the leading hadrons (energy fraction z -> 1), suppression varying from 25% in carbon up to 75% in lead. An enhancement of the multiplicity ratio at low z and high p(T)(2) is observed, suggesting an interconnection between these two variables. This behavior is qualitatively similar to the previous twofold differential measurement of charged pions by the HERMES Collaboration and, recently, by CLAS Collaboration. The largest enhancement was observed at high p(T)(2) for heavier nuclei, namely, iron and lead, while the smallest enhancement was observed for the lightest nucleus, carbon. This behavior suggests a competition between partonic multiple scattering, which causes enhancement, and hadronic inelastic scattering, which causes suppression.
Tipologia CRIS:
1.1 Articolo in rivista
Elenco autori:
Mineeva, T.; Brooks, W. K.; El Alaoui, A.; Hakobyan, H.; Joo, K.; López, J. A.; Soto, O.; Achenbach, P.; Akbar, Z.; Alvarado, J. S.; Armstrong, W. R.; Arratia, M.; Atac, H.; Avagyan, H.; Gayoso, C. A.; Baashen, L.; Barion, L.; Bashkanov, M.; Bedlinskiy, I.; Benkel, B.; Benmokhtar, F.; Bianconi, A.; Biselli, A. S.; Bossù, F.; Boiarinov, S.; Brinkmann, K. T.; Briscoe, W. J.; Burkert, V. D.; Cao, T.; Capobianco, R.; Carman, D. S.; Carvajal, J. C.; Celentano, A.; Chatagnon, P.; Chesnokov, V.; Chetry, T.; Ciullo, G.; Cole, P. L.; Contalbrigo, M.; Costantini, G.; D'Angelo, A.; Dashyan, N.; De Vita, R.; Defurne, M.; Deur, A.; Diehl, S.; Djalali, C.; Dupre, R.; Egiyan, H.; El Fassi, L.; Eugenio, P.; Fegan, S.; Filippi, A.; Gavalian, G.; Gilfoyle, G. P.; Girod, F. X.; Golubenko, A. A.; Gosta, G.; Gothe, R. W.; Griffioen, K. A.; Guo, L.; Hafidi, K.; Hattawy, M.; Hauenstein, F.; Hayward, T. B.; Heddle, D.; Hobart, A.; Holtrop, M.; Hung, Y. C.; Ilieva, Y.; Ireland, D. G.; Isupov, E. L.; Jo, H. S.; Keller, D.; Khanal, A.; Khandaker, M.; Kim, W.; Klein, F. J.; Klimenko, V.; Kripko, A.; Kubarovsky, V.; Kuhn, S. E.; Lanza, L.; Leali, M.; Lee, S.; Lenisa, P.; Li, X.; Macgregor, I. J. D.; Marchand, D.; Mascagna, V.; Mckinnon, B.; Migliorati, S.; Milner, R. G.; Mirazita, M.; Mokeev, V.; Moran, P.; Camacho, C. M.; Nadel-Turonski, P.; Neupane, K.; Nguyen, D.; Venturelli, L.
Autori di Ateneo:
BIANCONI Andrea
MASCAGNA Valerio
VENTURELLI Luca
Link alla scheda completa:
https://iris.unibs.it/handle/11379/639459
Link al Full Text:
https://iris.unibs.it/retrieve/handle/11379/639459/378285/mineeva_CLAS_2025.pdf
Pubblicato in:
PHYSICAL REVIEW C
Journal
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