An initial study of mesons and baryons containing strange quarks with GlueX
Abstract
The primary motivation of the GlueX experiment is to search for and ultimately study the pattern of gluonic excitations in the meson spectrum produced in collisions. Recent lattice QCD calculations predict a rich spectrum of hybrid mesons that have both exotic and non-exotic , corresponding to states ( or ) coupled with a gluonic field. A thorough study of the hybrid spectrum, including the identification of the isovector triplet, with charges 0 and , and both isoscalar members, and , for each predicted hybrid combination of , may only be achieved by conducting a systematic amplitude analysis of many different hadronic final states. Detailed studies of the performance of the \gx detector have indicated that identification of particular final states with kaons is possible using the baseline detector configuration. The efficiency of kaon detection coupled with the relatively lower production cross section for particles containing hidden strangeness will require a high intensity run in order for analyses of such states to be feasible. We propose to collect a total of 200 days of physics analysis data at an average intensity of tagged photons on target per second. This data sample will provide an order of magnitude statistical improvement over the initial GlueX running, which will allow us to begin a program of studying mesons and baryons containing strange quarks. In addition, the increased intensity will permit us to study reactions that may have been statistically limited in the initial phases of GlueX. Overall, this will lead to a significant increase in the potential for \gx to make key experimental advances in our knowledge of hybrid mesons and excited baryons.
Keywords
Cite
@article{arxiv.1305.1523,
title = {An initial study of mesons and baryons containing strange quarks with GlueX},
author = {The GlueX Collaboration and A. AlekSejevs and S. Barkanova and M. Dugger and B. Ritchie and I. Senderovich and E. Anassontzis and P. Ioannou and C. Kourkoumeli and G. Voulgaris and N. Jarvis and W. Levine and P. Mattione and W. McGinley and C. A. Meyer and R. Schumacher and M. Staib and P. Collins and F. Klein and D. Sober and D. Doughty and A. Barnes and R. Jones and J. McIntyre and F. Mokaya and B. Pratt and W. Boeglin and L. Guo and P. Khetarpal and E. Pooser and J. Reinhold and H. Al Ghoul and S. Capstick and V. Crede and P. Eugenio and A. Ostrovidov and N. Sparks and A. Tsaris and D. Ireland and K. Livingston and D. Bennett and J. Bennett and J. Frye and M. Lara and J. Leckey and R. Mitchell and K. Moriya and M. R. Shepherd and A. Szczepaniak and R. Miskimen and A. Mushkarenkov and B. Guegan and J. Hardin and J. Stevens and M. Williams and A. Ponosov and S. Somov and C. Salgado and P. Ambrozewicz and A. Gasparian and R. Pedroni and T. Black and L. Gan and S. Dobbs and K. K. Seth and A. Tomaradze and J. Dudek and F. Close and E. Swanson and S. Denisov and G. Huber and D. Kolybaba and S. Krueger and G. Lolos and Z. Papandreou and A. Semenov and I. Semenova and M. Tahani and W. Brooks and H. Hakobyan and S. Kuleshov and O. Soto and A. Toro and I. Vega and R. White and F. Barbosa and E. Chudakov and H. Egiyan and M. Ito and D. Lawrence and M. McCaughan and M. Pennington and L. Pentchev and Y. Qiang and E. S. Smith and A. Somov and S. Taylor and T. Whitlatch and E. Wolin and B. Zihlmann},
journal= {arXiv preprint arXiv:1305.1523},
year = {2013}
}
Comments
22 pages, 8 figures