Browsing by Author "Park, K."
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Publication Branching ratio of the electromagnetic decay of the Σ +(1385)(2012-03-19) ;Keller, D. ;Hicks, K. ;Adhikari, K. P. ;Adikaram, D. ;Amaryan, M. J. ;Anghinolfi, M. ;Baghdasaryan, H. ;Ball, J. ;Battaglieri, M. ;Bedlinskiy, I. ;Biselli, A. S. ;Bookwalter, C. ;Boiarinov, S. ;Branford, D. ;Briscoe, W. J.; ;Burkert, V. D. ;Carman, D. S. ;Celentano, A. ;Chandavar, S. ;Cole, P. L. ;Contalbrigo, M. ;Crede, V. ;D'Angelo, A. ;Daniel, A. ;Dashyan, N. ;De Vita, R. ;De Sanctis, E. ;Djalali, C. ;Doughty, D. ;Dupre, R. ;El Alaoui, A. ;El Fassi, L. ;Elouadrhiri, L. ;Eugenio, P. ;Fedotov, G. ;Gabrielyan, M. Y. ;Gevorgyan, N. ;Gilfoyle, G. P. ;Giovanetti, K. L. ;Gohn, W. ;Golovatch, E. ;Gothe, R. W. ;Graham, L. ;Griffioen, K. A. ;Guidal, M. ;Guler, N. ;Guo, L. ;Hafidi, K.; ;Holtrop, M. ;Ilieva, Y. ;Ireland, D. G. ;Ishkhanov, B. S. ;Isupov, E. L. ;Jo, H. S. ;Joo, K. ;Khandaker, M. ;Khetarpal, P. ;Kim, A. ;Kim, W. ;Klein, F. J. ;Kubarovsky, A. ;Kubarovsky, V.; ;Lu, H. Y. ;MacGregor, I. J.D. ;Mao, Y. ;Markov, N. ;Mayer, M. ;McKinnon, B. ;Meyer, C. A. ;Mineeva, T. ;Mirazita, M. ;Mokeev, V. ;Moutarde, H. ;Munevar, E. ;Nadel-Turonski, P. ;Nasseripour, R. ;Niccolai, S. ;Niculescu, G. ;Niculescu, I. ;Osipenko, M. ;Ostrovidov, A. I. ;Paolone, M. ;Pappalardo, L. ;Paremuzyan, R. ;Park, K. ;Park, S. ;Pasyuk, E. ;Anefalos Pereira, S. ;Pisano, S. ;Pogorelko, O. ;Pozdniakov, S. ;Procureur, S. ;Prok, Y. ;Protopopescu, D. ;Raue, B. A. ;Ricco, G.Rimal, D.The CLAS detector was used to obtain the first ever measurement of the electromagnetic decay of the Σ*⁺(1385) from the reaction γp → K⁰Σ*⁺(1385). A real photon beam with a maximum energy of 3.8 GeV was incident on a liquid-hydrogen target, resulting in the photoproduction of the kaon and Σ* hyperon. Kinematic fitting was used to separate the reaction channel from the background processes. The fitting algorithm exploited a new method to kinematically fit neutrons in the CLAS detector, leading to the measured decay widths ratio: Γ(Σ⁺(1385) → Σ⁺γ) / Γ(Σ⁺(1385) → Σ⁺π⁰) = 11.95 ± 2.21 (stat) ⁺⁰.⁵³₋₁.₂₁ (sys) % and a deduced partial width of: Γ(Σ⁺(1385) → Σ⁺γ) = 250.0 ± 56.9 (stat) ⁺³⁴.³₋₄₁.² (sys) keV A U-spin symmetry test using the SU(3) flavor-multiplet representation yields predictions for the Σ*⁺(1385) → Σ⁺γ and Σ*⁰(1385) → Λγ partial widths that agree with the experimental measurements.Scopus© Citations 15 - Some of the metrics are blocked by yourconsent settings
Publication Double KS0 photoproduction off the proton at CLAS(2018-02-26) ;Chandavar, S. ;Goetz, J. T. ;Hicks, K. ;Keller, D. ;Kunkel, M. C. ;Paolone, M. ;Weygand, D. P. ;Adhikari, K. P. ;Adhikari, S. ;Akbar, Z. ;Ball, J. ;Balossino, I. ;Barion, L. ;Bashkanov, M. ;Battaglieri, M. ;Bedlinskiy, I. ;Biselli, A. S. ;Briscoe, W. J.; ;Burkert, V. D. ;Cao, F. ;Carman, D. S. ;Celentano, A. ;Charles, G. ;Chetry, T. ;Ciullo, G. ;Clark, L. ;Cole, P. L. ;Contalbrigo, M. ;Crede, V. ;D'Angelo, A. ;Dashyan, N. ;De Vita, R. ;De Sanctis, E. ;Defurne, M. ;Deur, A. ;Djalali, C. ;Dupre, R. ;Egiyan, H.; ;El Fassi, L. ;Eugenio, P. ;Fedotov, G. ;Filippi, A. ;Fradi, A. ;Gavalian, G. ;Ghandilyan, Y. ;Gilfoyle, G. P. ;Girod, F. X. ;Glazier, D. I. ;Gohn, W. ;Golovatch, E. ;Gothe, R. W. ;Griffioen, K. A. ;Guidal, M. ;Guo, L. ;Hafidi, K.; ;Hanretty, C. ;Harrison, N. ;Hattawy, M. ;Heddle, D. ;Holtrop, M. ;Ilieva, Y. ;Ireland, D. G. ;Isupov, E. L. ;Jenkins, D. ;Johnston, S. ;Joo, K. ;Joosten, S. ;Kabir, M. L. ;Khachatryan, G. ;Khachatryan, M. ;Khandaker, M. ;Kim, W. ;Klein, A. ;Klein, F. J. ;Kubarovsky, V. ;Lanza, L. ;Lenisa, P. ;Livingston, K. ;MacGregor, I. J.D. ;Markov, N. ;McCracken, M. E. ;McKinnon, B. ;Meyer, C. A.; ;Mokeev, V. ;Movsisyan, A. ;Munoz Camacho, C. ;Nadel-Turonski, P. ;Niccolai, S. ;Niculescu, G. ;Osipenko, M. ;Ostrovidov, A. I. ;Paremuzyan, R. ;Park, K. ;Pasyuk, E. ;Phelps, W.Pogorelko, O.The f0(1500) meson resonance is one of several contenders to have significant mixing with the lightest glueball. This resonance is well established from several previous experiments. Here we present the first photoproduction data for the f0(1500) via decay into the K0 SK 0 S channel using the CLAS detector. The reaction γp → fJp → K0 SK0 Sp, where J = 0,2, was measured with photon energies from 2.7 to 5.1 GeV. A clear peak is seen at 1500 MeV in the background subtracted invariant mass spectra of the two kaons. This is enhanced if the measured 4-momentum transfer to the proton target is restricted to be less than 1.0 GeV2. By comparing data with simulations, it can be concluded that the peak at 1500 MeV is produced primarily at low t, which is consistent with at-channel production mechanism.Scopus© Citations 8 - Some of the metrics are blocked by yourconsent settings
Publication First measurement of Ξ− polarization in photoproduction(2018-08-10) ;Bono, J. ;Guo, L. ;Raue, B. A. ;Adhikari, S. ;Kunkel, M. C.; ;Akbar, Z. ;Amaryan, M. J. ;Ball, J. ;Barion, L. ;Bashkanov, M. ;Battaglieri, M. ;Batourine, V. ;Bedlinskiy, I. ;Biselli, A. S.; ;Burkert, V. D. ;Cao, F. ;Carman, D. S. ;Celentano, A. ;Charles, G. ;Chetry, T. ;Ciullo, G. ;Clary, Brandon A. ;Cole, P. L. ;Contalbrigo, M. ;Crede, V. ;D'Angelo, A. ;Dashyan, N. ;De Vita, R. ;Defurne, M. ;Deur, A. ;Diehl, S. ;Djalali, C. ;Dugger, M. ;Egiyan, H. ;El Fassi, L. ;Eugenio, P. ;Fedotov, G. ;Filippi, A. ;Fradi, A. ;Gavalian, G. ;Gevorgyan, N. ;Ghandilyan, Y. ;Girod, F. X. ;Glazier, D. I. ;Gohn, W. ;Golovatch, E. ;Gothe, R. W. ;Griffioen, K. A. ;Hafidi, K. ;Harrison, N. ;Hattawy, M. ;Heddle, D. ;Hicks, K. ;Holtrop, M. ;Ilieva, Y. ;Ireland, D. G. ;Isupov, E. L. ;Jo, H. S. ;Johnston, S. ;Kabir, M. L. ;Keller, D. ;Khachatryan, G. ;Khachatryan, M. ;Khandaker, M. ;Kim, A. ;Kim, W. ;Klein, A. ;Klein, F. J. ;Kubarovsky, V. ;Lenisa, P. ;Livingston, K. ;MacGregor, I. J.D. ;Markov, N. ;McKinnon, B. ;Mineeva, T. ;Montgomery, R. A. ;Munoz Camacho, C. ;Niculescu, G. ;Osipenko, M. ;Ostrovidov, A. I. ;Paolone, M. ;Paremuzyan, R. ;Park, K. ;Pasyuk, E. ;Phelps, W. ;Pogorelko, O. ;Price, J. W. ;Prok, Y. ;Protopopescu, D. ;Ripani, M. ;Rizzo, A. ;Rosner, G. ;Sabatié, F. ;Salgado, C. ;Schumacher, R. A. ;Sharabian, Y.Despite decades of studies of the photoproduction of hyperons, both their production mechanisms and their spectra of excited states are still largely unknown. While the parity-violating weak decay of hyperons offers a means of measuring their polarization, which could help discern their production mechanisms and identify their excitation spectra, no such study has been possible for doubly strange baryons in photoproduction, due to low production cross sections. However, by making use of the reaction, we have measured, for the first time, the induced polarization, P, and the transferred polarization from circularly polarized real photons, characterized by and, to recoiling s. The data were obtained using the CEBAF Large Acceptance Spectrometer (CLAS) at Jefferson Lab for photon energies from just over threshold (2.4 GeV) to 5.45 GeV. These first-time measurements are compared, and are shown to broadly agree, with model predictions in which cascade photoproduction proceeds through the decay of intermediate hyperon resonances that are produced via relativistic meson exchange, offering a new step forward in the understanding of the production and polarization of doubly-strange baryons.Scopus© Citations 4 - Some of the metrics are blocked by yourconsent settings
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
