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  4. First Measurement of 螞 Electroproduction off Nuclei in the Current and Target Fragmentation Regions
 
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First Measurement of 螞 Electroproduction off Nuclei in the Current and Target Fragmentation Regions

Journal
Physical Review Letters
Date Issued
2023-04-07
Author(s)
Chetry, T.
El Fassi, L.
Brooks, W. K.
Dupr茅, R.
My Ahmed , El Alaoui 
Centro Cient铆fico Tecnol贸gico de Valpara铆so CCTVAL USM
Hafidi, K.
Achenbach, P.
Adhikari, K. P.
Akbar, Z.
Armstrong, W. R.
Arratia, M.
Atac, H.
Avakian, H.
Baashen, L.
Baltzell, N. A.
Barion, L.
Bashkanov, M.
Battaglieri, M.
Bedlinskiy, I.
Benkel, B.
Departamento de F铆sica
Benmokhtar, F.
Bianconi, A.
Biselli, A. S.
Bondi, M.
Booth, W. A.
Boss霉, F.
Boiarinov, S.
Brinkmann, K. Th
Briscoe, W. J.
Bulumulla, D.
Burkert, V. D.
Carman, D. S.
Carvajal, J. C.
Celentano, A.
Chatagnon, P.
Chesnokov, V.
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.
Egiyan, H.
Elouadrhiri, L.
Eugenio, P.
Fegan, S.
Filippi, A.
Gavalian, G.
Ghandilyan, Y.
Gilfoyle, G. P.
Glazier, D. I.
Golubenko, A. A.
Gosta, G.
Gothe, R. W.
Griffioen, K. A.
Guidal, M.
Guo, L.
Hakobyan, Hayk 
Departamento de F铆sica
Hattawy, M.
Hayward, T. B.
Heddle, D.
Hobart, A.
Holtrop, M.
Ilieva, Y.
Ireland, D. G.
Isupov, E. L.
Jenkins, D.
Jo, H. S.
Kabir, M. L.
Khanal, A.
Khandaker, M.
Kim, A.
Kim, W.
Klein, F. J.
Kripko, A.
Kubarovsky, V.
Lagerquist, V.
Lanza, L.
Leali, M.
Lee, S.
Lenisa, P.
Li, X.
Livingston, K.
Macgregor, I. J.D.
Marchand, D.
Mascagna, V.
McKinnon, B.
McLauchlin, C.
Meziani, Z. E.
Migliorati, S.
Mineeva, Taisiya 
Departamento de F铆sica
Mirazita, M.
Mokeev, V.
Munoz Camacho, C.
Nadel-Turonski, P.
DOI
10.1103/PhysRevLett.130.142301
Abstract
We report results of 螞 hyperon production in semi-inclusive deep-inelastic scattering off deuterium, carbon, iron, and lead targets obtained with the CLAS detector and the Continuous Electron Beam Accelerator Facility 5.014 GeV electron beam. These results represent the first measurements of the 螞 multiplicity ratio and transverse momentum broadening as a function of the energy fraction (饾懅) in the current and target fragmentation regions. The multiplicity ratio exhibits a strong suppression at high 饾懅 and an enhancement at low 饾懅. The measured transverse momentum broadening is an order of magnitude greater than that seen for light mesons. This indicates that the propagating entity interacts very strongly with the nuclear medium, which suggests that propagation of diquark configurations in the nuclear medium takes place at least part of the time, even at high 饾懅. The trends of these results are qualitatively described by the Giessen Boltzmann-Uehling-Uhlenbeck transport model, particularly for the multiplicity ratios. These observations will potentially open a new era of studies of the structure of the nucleon as well as of strange baryons.
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