Skip to main navigation Skip to search Skip to main content

Υ(1S)→γ+noninteracting particles

  • R. Balest
  • , K. Cho
  • , T. Ford
  • , D. R. Johnson
  • , K. Lingel
  • , M. Lohner
  • , P. Rankin
  • , J. G. Smith
  • , J. P. Alexander
  • , C. Bebek
  • , K. Berkelman
  • , K. Bloom
  • , T. E. Browder
  • , D. G. Cassel
  • , H. A. Cho
  • , D. M. Coffman
  • , D. S. Crowcroft
  • , P. S. Drell
  • , D. Dumas
  • , R. Ehrlich
  • P. Gaidarev, R. S. Galik, M. Garcia-Sciveres, B. Geiser, B. Gittelman, S. W. Gray, D. L. Hartill, B. K. Heltsley, S. Henderson, C. D. Jones, S. L. Jones, J. Kandaswamy, N. Katayama, P. C. Kim, D. L. Kreinick, G. S. Ludwig, J. Masui, J. Mevissen, N. B. Mistry, C. R. Ng, E. Nordberg, J. R. Patterson, D. Peterson, D. Riley, S. Salman, M. Sapper, F. Würthwein, M. M. Urish, P. Avery, A. Freyberger, J. Rodriguez, S. Yang, J. Yelton, D. Cinabro, T. Liu, M. Saulnier, R. Wilson, H. Yamamoto, T. Bergfeld, B. I. Eisenstein, G. Gollin, B. Ong, M. Palmer, M. Selen, J. J. Thaler, K. W. Edwards, M. Ogg, A. Bellerive, D. I. Britton, E. R.F. Hyatt, D. B. MacFarlane, P. M. Patel, B. Spaan, A. J. Sadoff, R. Ammar, P. Baringer, A. Bean, D. Besson, D. Coppage, N. Copty, R. Davis, N. Hancock, M. Kelly, S. Kotov, I. Kravchenko, N. Kwak, H. Lam, Y. Kubota, M. Lattery, M. Momayezi, J. K. Nelson, S. Patton, R. Poling, V. Savinov, S. Schrenk, R. Wang, M. S. Alam, I. J. Kim, Z. Ling, A. H. Mahmood, J. J. O'Neill, H. Severini, C. R. Sun, F. Wappler, G. Crawford, C. M. Daubenmier, R. Fulton, D. Fujino, K. K. Gan, K. Honscheid, H. Kagan, R. Kass, J. Lee, R. Malchow, M. Sung, C. White, M. M. Zoeller, F. Butler, X. Fu, B. Nemati, W. R. Ross, P. Skubic, M. Wood, M. Bishai, J. Fast, E. Gerndt, R. L. McIlwain, T. Miao, D. H. Miller, M. Modesitt, D. Payne, E. I. Shibata, I. P.J. Shipsey, P. N. Wang, M. Battle, J. Ernst, L. Gibbons, Y. Kwon, S. Roberts, E. H. Thorndike, C. H. Wang, J. Dominick, M. Lambrecht, S. Sanghera, V. Shelkov, T. Skwarnicki, R. Stroynowski, I. Volobouev, G. Wei, P. Zadorozhny, M. Artuso, M. Gao, M. Goldberg, D. He, N. Horwitz, G. C. Moneti, R. Mountain, F. Muheim, Y. Mukhin, S. Playfer, Y. Rozen, S. Stone, X. Xing, G. Zhu, J. Bartelt, S. E. Csorna, Z. Egyed, V. Jain, D. Gibaut, K. Kinoshita, P. Pomianowski, B. Barish, M. Chadha, S. Chan, D. F. Cowen, G. Eigen, J. S. Miller, C. O'Grady, J. Urheim, A. J. Weinstein, M. Athanas, W. Brower, G. Masek, H. P. Paar, M. Sivertz, J. Gronberg, R. Kutschke, S. Menary, R. J. Morrison, S. Nakanishi, H. N. Nelson, T. K. Nelson, C. Qiao, J. D. Richman, A. Ryd, D. Sperka, H. Tajima, M. S. Witherell
  • University of Colorado Boulder
  • Cornell University
  • University of Florida
  • Harvard University
  • University of Illinois at Urbana-Champaign
  • Carleton University
  • Institute of Particle Physics
  • McGill University
  • Ithaca College
  • University of Kansas
  • University of Minnesota Twin Cities
  • SUNY Albany
  • Ohio State University
  • University of Oklahoma
  • Purdue University
  • University of Rochester
  • Southern Methodist University
  • Syracuse University
  • Vanderbilt University
  • Virginia Polytechnic Institute and State University
  • California Institute of Technology
  • University of California at San Diego
  • University of California at Santa Barbara

Research output: Contribution to journalArticlepeer-review

64 Scopus citations

Abstract

We consider the decay of Υ(1S) particles produced at CESR into a photon which is observed by the CLEO detector plus particles which are not seen. These could be real particles which fall outside of our acceptance, or particles which are noninteracting. We report the results of our search fo the process Υ(1S)→γ+''unseen'' for photon energies >1 GeV, obtaining limits for the case where ''unseen'' is either a single particle or a particle-antiparticle pair. Our upper limits represent the highest sensitivity measurements for such decays to date.

Original languageEnglish
Pages (from-to)2053-2060
Number of pages8
JournalPhysical Review D
Volume51
Issue number5
DOIs
StatePublished - 1995

Fingerprint

Dive into the research topics of 'Υ(1S)→γ+noninteracting particles'. Together they form a unique fingerprint.

Cite this