Browsing by Author "Aznauryan, I. G."
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Publication Measurements of ep → e'π⁺n at 1.6 < W < 2.0 GeV and extraction of nucleon resonance electrocouplings at CLAS MEASUREMENTS of ep→e′π+n ⋯ K. PARK et al.(2015-04-13) ;Park, K. ;Aznauryan, I. G. ;Burkert, V. D. ;Adhikari, K. P. ;Amaryan, M. J. ;Pereira, S. Anefalos ;Avakian, H. ;Battaglieri, M. ;Badui, R. ;Bedlinskiy, I. ;Biselli, A. S. ;Bono, J. ;Briscoe, W. J.; ;Carman, D. S. ;Celentano, A. ;Chandavar, S. ;Charles, G. ;Colaneri, L. ;Cole, P. L. ;Contalbrigo, M. ;Cortes, O. ;Crede, V. ;D'Angelo, A. ;Dashyan, N. ;De Vita, R. ;De Sanctis, E. ;Deur, A. ;Djalali, C. ;Doughty, D. ;Dupre, R. ;Egiyan, H.; ;Elouadrhiri, L. ;Fassi, L. El ;Eugenio, P. ;Fedotov, G. ;Fegan, S. ;Fersch, R. ;Filippi, A. ;Fleming, J. A. ;Garillon, B. ;Garçon, M. ;Gevorgyan, N. ;Gilfoyle, G. P. ;Giovanetti, K. L. ;Girod, F. X. ;Joo, H. S. ;Goetz, J. T. ;Golovatch, E. ;Gothe, R. W. ;Griffioen, K. A. ;Guegan, B. ;Guidal, M. ;Guo, L.; ;Hanretty, C. ;Hattawy, M. ;Hicks, K. ;Holtrop, M. ;Hughes, S. M. ;Hyde, C. E. ;Ilieva, Y. ;Ireland, D. G. ;Ishkhanov, B. S. ;Isupov, E. L. ;Jenkins, D. ;Jiang, H. ;Jo, H. S. ;Joo, K. ;Joosten, S. ;Keller, D. ;Khandaker, M. ;Kim, A. ;Kim, W. ;Klein, A. ;Klein, F. J. ;Kubarovsky, V. ;Kuhn, S. E.; ;Lenisa, P. ;Livingston, K. ;Lu, H. Y. ;Macgregor, I. J.D. ;Markov, N. ;Martinez, D. ;McKinnon, B. ;Mokeev, V. ;Montgomery, R. A. ;Moutarde, H. ;Camacho, C. Munoz ;Nadel-Turonski, P. ;Niccolai, S. ;Niculescu, G. ;Niculescu, I. ;Osipenko, M. ;Ostrovidov, A. I. ;Paolone, M. ;Pasyuk, E.Peng, P.Differential cross sections of the exclusive process ep → e'π⁺n were measured with good precision in the range of the photon virtuality Q² = 1.8-4.5 GeV² and the invariant mass range of the π⁺n final state W = 1.6-2.0 GeV using the Continuous Electron Beam Accelerator Facility Large Acceptance Spectrometer. Data were collected with nearly complete coverage in the azimuthal and polar angles of the nπ⁺ center-of-mass system. More than 37000 cross-section points were measured. The contributions of the isospin I = 1/2 resonances N(1675)5/2⁻, N(1680)5/2⁺, and N(1710)1/2⁺ were extracted at different values of Q² using a single-channel, energy-dependent resonance amplitude analysis. Two different approaches, the unitary isobar model and the fixed-t dispersion relations, were employed in the analysis. We observe significant strength of the N(1675)5/2⁻ in the A₁/₂ amplitude, which is in strong disagreement with quark models that predict both transverse amplitudes to be strongly suppressed. For the N(1680)5/2⁺ we observe a slow changeover from the dominance of the A₃/₂ amplitude at the real photon point (Q² = 0) to a Q² where A₁/₂ begins to dominate. The scalar amplitude S₁/₂ drops rapidly with Q² consistent with quark model prediction. For the N(1710)1/2⁺ resonance our analysis shows significant strength for the A₁/₂ amplitude at Q² < 2.5 GeV².Scopus© Citations 56
