We report the K(s)(0) multiplicity ratios for targets of C, Fe, and Pb relative to deuterium as a function of the fractional virtual photon energy z transferred to the K(s)(0) and the transverse momentum squared p(T)(2). of the K(s)(0). We find that the multiplicity ratios for K(s)(0) are reduced in the nuclear medium at high z and low p(T)(2), with a trend for the K(s)(0) momentum to be broadened in the nucleus for large p(T)(2).

Daniel, A., Hicks, K., Brooks, W., Hakobyan, H., Adhikari, K., Adikaram, D., et al. (2011). Measurement of the nuclear multiplicity ratio for K(s)(0) hadronization at CLAS. PHYSICS LETTERS. SECTION B, 706(1), 26-31 [10.1016/j.physletb.2011.10.071].

Measurement of the nuclear multiplicity ratio for K(s)(0) hadronization at CLAS

D'ANGELO, ANNALISA;PISANO, SILVIA;
2011-11-30

Abstract

We report the K(s)(0) multiplicity ratios for targets of C, Fe, and Pb relative to deuterium as a function of the fractional virtual photon energy z transferred to the K(s)(0) and the transverse momentum squared p(T)(2). of the K(s)(0). We find that the multiplicity ratios for K(s)(0) are reduced in the nuclear medium at high z and low p(T)(2), with a trend for the K(s)(0) momentum to be broadened in the nucleus for large p(T)(2).
30-nov-2011
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore FIS/04 - FISICA NUCLEARE E SUBNUCLEARE
English
Con Impact Factor ISI
Hadronization; Hadron production; Deep inelastic scattering; Nuclei; Quarks
http://www.sciencedirect.com/science/article/pii/S0370269311013372
Daniel, A., Hicks, K., Brooks, W., Hakobyan, H., Adhikari, K., Adikaram, D., et al. (2011). Measurement of the nuclear multiplicity ratio for K(s)(0) hadronization at CLAS. PHYSICS LETTERS. SECTION B, 706(1), 26-31 [10.1016/j.physletb.2011.10.071].
Daniel, A; Hicks, K; Brooks, W; Hakobyan, H; Adhikari, K; Adikaram, D; Aghasyan, M; Amarian, M; Anghinolfi, M; Avakian, H; Baghdasaryan, H; Battaglieri, M; Batourine, V; Bedlinskiy, I; Bennett, R; Biselli, A; Bookwalter, C; Briscoe, W; Burkert, V; Carman, D; Casey, L; Celentano, A; Chandavar, S; Cole, P; Contalbrigo, M; Crede, V; D'Angelo, A; Dashyan, N; De Vita, R; De Sanctis, E; Deur, A; Dey, B; Dickson, R; Djalali, C; Dodge, G; Doughty, D; Egiyan, H; El Fassi, L; Elouadrhiri, L; Eugenio, P; Fedotov, G; Fegan, S; Gabrielyan, M; Gevorgyan, N; Gilfoyle, G; Giovanetti, K; Girod, F; Goetz, J; Gohn, W; Golovatch, E; Gothe, R; Griffioen, K; Guidal, M; Guo, L; Hanretty, C; Heddle, D; Holtrop, M; Hyde, C; Ilieva, Y; Ireland, D; Ishkhanov, B; Isupov, E; Jawalkar, S; Jo, H; Joo, K; Kalantarians, N; Keller, D; Khandaker, M; Khetarpal, P; Kim, A; Kim, W; Klein, A; Klein, F; Kubarovsky, V; Kuleshov, S; Kuznetsov, V; Lu, N; Macgregor, I; Mao, Y; Markov, N; Mayer, M; Mcandrew, J; Mckinnon, B; Meyer, C; Mineeva, T; Mirazita, M; Mokeev, V; Moutarde, H; Munevar, E; Nadel Turonski, P; Ni, A; Niccolai, S; Niculescu, G; Niculescu, I; Osipenko, M; Ostrovidov, A; Paolone, M; Pappalardo, L; Paremuzyan, R; Park, K; Park, S; Pasyuk, E; Pereira, S; Phelps, E; Pisano, S; Pogorelko, O; Pozdniakov, S; Price, J; Procureur, S; Protopopescu, D; Raue, B; Ricco, G; Rimal, D; Ripani, M; Rosner, G; Rossi, P; Sabatie, F; Saini, M; Salgado, C; Schott, D; Schumacher, R; Seraydaryan, H; Sharabian, Y; Smith, G; Sober, D; Sokhan, D; Stepanyan, S; Stepanyan, S; Strauch, S; Taiuti, M; Tang, W; Taylor, C; Tkachenko, S; Ungaro, M; Vernarsky, B; Vineyard, M; Voskanyan, H; Voutier, E; Watts, D; Weinstein, L; Weygand, D; Wood, M; Zana, L; Zachariou, N; Zhao, B; Zhao, Z
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/39527
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