The exclusive electroproduction of π + above the resonance region was studied using the CEBAF Large Acceptance Spectrometer (CLAS) at Jefferson Laboratory by scattering a 6GeV continuous electron beam off a hydrogen target. The large acceptance and good resolution of CLAS, together with the high luminosity, allowed us to measure the cross section for the γ * p → nπ + process in 140 (Q 2, x B , t) bins: 0.16 < x B < 0.58, 1.6 GeV2 < Q 2 < 4.5 GeV2 and 0.1 GeV2 < −t < 5.3 GeV2. For most bins, the statistical accuracy is on the order of a few percent. Differential cross sections are compared to four theoretical models, based either on hadronic or on partonic degrees of freedom. The four models can describe the gross features of the data reasonably well, but differ strongly in their ingredients. In particular, the model based on Generalized Parton Distributions (GPDs) contain the interesting potential to experimentally access transversity GPDs.

Park, K., Guidal, M., Gothe R, W., Laget J, M., Garcon, M., Adhikari K, P., et al. (2013). Deep exclusive pi(+) electroproduction off the proton at CLAS. THE EUROPEAN PHYSICAL JOURNAL. A, HADRONS AND NUCLEI, 49(1), 1-18 [10.1140/epja/i2013-13016-9].

Deep exclusive pi(+) electroproduction off the proton at CLAS

D'ANGELO, ANNALISA;PISANO, SILVIA;
2013-01-30

Abstract

The exclusive electroproduction of π + above the resonance region was studied using the CEBAF Large Acceptance Spectrometer (CLAS) at Jefferson Laboratory by scattering a 6GeV continuous electron beam off a hydrogen target. The large acceptance and good resolution of CLAS, together with the high luminosity, allowed us to measure the cross section for the γ * p → nπ + process in 140 (Q 2, x B , t) bins: 0.16 < x B < 0.58, 1.6 GeV2 < Q 2 < 4.5 GeV2 and 0.1 GeV2 < −t < 5.3 GeV2. For most bins, the statistical accuracy is on the order of a few percent. Differential cross sections are compared to four theoretical models, based either on hadronic or on partonic degrees of freedom. The four models can describe the gross features of the data reasonably well, but differ strongly in their ingredients. In particular, the model based on Generalized Parton Distributions (GPDs) contain the interesting potential to experimentally access transversity GPDs.
30-gen-2013
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore FIS/04 - FISICA NUCLEARE E SUBNUCLEARE
English
Con Impact Factor ISI
VIRTUAL COMPTON-SCATTERING; PION FORM-FACTOR; CROSS-SECTION; HIGH-ENERGIES; SCALING LAWS; PHOTOPRODUCTION; DEUTERON; MESONS; PHOTODISINTEGRATION; MOMENTUM
CLAS Collaboration
http://link.springer.com/article/10.1140%2Fepja%2Fi2013-13016-9
Park, K., Guidal, M., Gothe R, W., Laget J, M., Garcon, M., Adhikari K, P., et al. (2013). Deep exclusive pi(+) electroproduction off the proton at CLAS. THE EUROPEAN PHYSICAL JOURNAL. A, HADRONS AND NUCLEI, 49(1), 1-18 [10.1140/epja/i2013-13016-9].
Park, K; Guidal, M; Gothe R, W; Laget J, M; Garcon, M; Adhikari K, P; Aghasyan, M; Amaryan M, J; Anghinolfi, M; Avakian, H; Baghdasaryan, H; Ball, J; Baltzell N, A; Battaglieri, M; Bedlinsky, I; Bennett R, P; Biselli A, S; Bookwalter, C; Boiarinov, S; Briscoe W, J; Brooks W, K; Burkert V, D; Carman D, S; Celentano, A; Chandavar, S; Charles, G; Contalbrigo, M; Crede, V; D'Angelo, A; Daniel, A; Dashyan, N; De Vita, R; De Sanctis, E; Deur, A; Djalali, C; Dodge G, E; Doughty, D; Dupre, R; Egiyan, H; El Alaoui, A; El Fassi, L; Eugenio, P; Fedotov, G; Fegan, S; Fleming J, A; Forest T, A; Fradi, A; Gevorgyan, N; Gilfoyle G, P; Giovanetti K, L; Girod F, X; Gohn, W; Golovatch, E; Graham, L; Griffioen K, A; Guegan, B; Guo, L; Hafidi, K; Hakobyan, H; Hanretty, C; Heddle, D; Hicks, K; Ho, D; Holtrop, M; Ilieva, Y; Ireland D, G; Ishkhanov B, S; Jenkins, D; Jo H, S; Keller, D; Khandaker, M; Khetarpal, P; Kim, A; Kim, W; Klein F, J; Koirala, S; Kubarovsky, A; Kubarovsky, V; Kuhn S, E; Kuleshov S, V; Livingston, K; Lu H, Y; MacGregor I. J, D; Mao, Y; Markov, N; Martinez, D; Mayer, M; Mckinnon, B; Meyer C, A; Mineeva, T; Mirazita, M; Mokeev, V; Moutarde, H; Munevar, E; Camacho C, M; Nadel Turonski, P; Nepali C, S; Niccolai, S; Niculescu, G; Niculescu, I; Osipenko, M; Ostrovidov A, I; Pappalardo L, L; Paremuzyan, R; Park, S; Pasyuk, E; Pereira S, A; Phelps, E; Pisano, S; Pogorelko, O; Pozdniakov, S; Price J, W; Procureur, S; Protopopescu, D; Puckett A. J, R; Raue B, A; Ricco, G; Rimal, D; Ripani, M; Rosner, G; Rossi, P; Sabatie, F; Saini M, S; Salgado, C; Schott, D; Schumacher R, A; Seder, E; Seraydaryan, H; Sharabian Y, G; Smith E, S; Smith G, D; Sober D, I; Sokhan, D; Stepanyan S, S; Stoler, P; Strakovsky I, I; Strauch, S; Taiuti, M; Tang, W; Taylor C, E; Tian, Y; Tkachenko, S; Trivedi, A; Ungaro, M; Vernarsky, B; Voskanyan, H; Voutier, E; Walford N, K; Watts D, P; Weinstein L, B; Weygand D, P; Wood M, H; Zachariou, N; Zhang, J; Zhao Z, W; Zonta, I
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/105118
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