The first high-statistics cross sections for the reactions γp→K*+Λ and γp→K*+Σ0 were measured using the CLAS detector at photon energies between threshold and 3.9 GeV at the Thomas Jefferson National Accelerator Facility. Differential cross sections are presented over the full range of the center-of-mass angles, and then fitted to Legendre polynomials to extract the total cross section. Results for the K*+Λ final state are compared with two different calculations in an isobar and a Regge model, respectively. Theoretical calculations significantly underestimate the K*+Λ total cross sections between 2.1 and 2.6 GeV, but are in better agreement with present data at higher photon energies.

Cross sections for the gamma p -> K*(+)Lambda and gamma p -> K*(+)Sigma(0) reactions measured at CLAS

CONTALBRIGO, Marco;PAPPALARDO, Luciano Libero;
2013

Abstract

The first high-statistics cross sections for the reactions γp→K*+Λ and γp→K*+Σ0 were measured using the CLAS detector at photon energies between threshold and 3.9 GeV at the Thomas Jefferson National Accelerator Facility. Differential cross sections are presented over the full range of the center-of-mass angles, and then fitted to Legendre polynomials to extract the total cross section. Results for the K*+Λ final state are compared with two different calculations in an isobar and a Regge model, respectively. Theoretical calculations significantly underestimate the K*+Λ total cross sections between 2.1 and 2.6 GeV, but are in better agreement with present data at higher photon energies.
2013
W., Tang; K., Hicks; D., Keller; S. H., Kim; H. C., Kim; K. P., Adhikari; M., Aghasyan; M. J., Amaryan; M. D., Anderson; S. A., Pereira; N. A., Baltzell; M., Battaglieri; I., Bedlinskiy; A. S., Biselli; J., Bono; S., Boiarinov; W. J., Briscoe; V. D., Burkert; D. S., Carman; A., Celentano; S., Chandavar; G., Charles; P. L., Cole; P., Collins; Contalbrigo, Marco; O., Cortes; V., Crede; A., D'Angelo; N., Dashyan; R. D., Vita; E. D., Sanctis; A., Deur; C., Djalali; D., Doughty; R., Dupre; A. E., Alaoui; L. E., Fassi; P., Eugenio; G., Fedotov; S., Fegan; J. A., Fleming; M. Y., Gabrielyan; N., Gevorgyan; G. P., Gilfoyle; K. L., Giovanetti; F. X., Girod; W., Gohn; E., Golovatch; R. W., Gothe; K. A., Griffioen; M., Guidal; L., Guo; K., Hafidi; H., Hakobyan; C., Hanretty; N., Harrison; D., Heddle; D., Ho; M., Holtrop; C. E., Hyde; Y., Ilieva; D. G., Ireland; B. S., Ishkhanov; E. L., Isupov; H. S., Jo; K., Joo; M., Khandaker; P., Khetarpal; A., Kim; W., Kim; F. J., Klein; S., Koirala; A., Kubarovsky; V., Kubarovsky; S. V., Kuleshov; K., Livingston; H. Y., Lu; I. J., D.; Y., Mao; N., Markov; D., Martinez; M., Mayer; B., Mckinnon; C. A., Meyer; V., Mokeev; H., Moutarde; E., Munevar; C. M., Camacho; P., Nadel Turonski; C. S., Nepali; S., Niccolai; G., Niculescu; I., Niculescu; M., Osipenko; A. I., Ostrovidov; Pappalardo, Luciano Libero; R., Paremuzyan; K., Park; S., Park; E., Pasyuk; E., Phelps; J. J., Phillips; S., Pisano; O., Pogorelko; S., Pozdniakov; J. W., Price; S., Procureur; Y., Prok; D., Protopopescu; A. J., R.; B. A., Raue; M., Ripani; D., Rimal; B. G., Ritchie; G., Rosner; P., Rossi; F., Sabatie; M. S., Saini; C., Salgado; D., Schott; R. A., Schumacher; H., Seraydaryan; Y. G., Sharabian; G. D., Smith; D. I., Sober; D., Sokhan; S. S., Stepanyan; S., Stepanyan; P., Stoler; I. I., Strakovsky; S., Strauch; C. E., Taylor; Y., Tian; S., Tkachenko; B., Torayev; M., Ungaro; B., Vernarsky; A. V., Vlassov; H., Voskanyan; E., Voutier; N. K., Walford; D. P., Watts; L. B., Weinstein; D. P., Weygand; M. H., Wood; N., Zachariou; L., Zana; J., Zhang; Z. W., Zhao; I., Zonta
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11392/1871810
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