E835 at FNAL: Charmonium Spectroscopy in Annihilations
✍ Scribed by Claudia Patrignani; M. Andreotti; S. Bagnasco; W. Baldini; D. Bettoni; G. Borreani; A. Buzzo; R. Calabrese; R. Cester; G. Cibinetto; P. Dalpiaz; G. Garzoglio; K.E. Gollwitzer; M. Graham; M. Hu; D. Joffe; J. Kasper; G. Lasio; M. Lo Vetere; E. Luppi; M. Macrì; M. Mandelkern; F. Marchetto; M. Marinelli; E. Menichetti; Z. Metreveli; R. Mussa; M. Negrini; M.M. Obertino; M. Pallavicini; N. Pastrone; T.K. Pedlar; S. Pordes; E. Robutti; W. Roethel; J.L. Rosen; P. Rumerio; R. Rusack; A. Santroni; J. Schultz; S.H. Seo; K.K. Seth; G. Stancari; M. Stancari; A. Tomaradze; I. Uman; T. Vidnovic; S. Werkema; P. Zweber
- Publisher
- Elsevier Science
- Year
- 2005
- Tongue
- English
- Weight
- 317 KB
- Volume
- 142
- Category
- Article
- ISSN
- 0920-5632
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Fermilab experiment E835 studies the direct formation of charmonium states in protonantiproton annihilations, obtained by intersecting the/5 beam of the Fermilab Antiproton Accumulator with an internal hydrogen jet target. In this paper we report the preliminary results from the 1996/1997 run, in p
Fermilab E835 Collaboration is committed to complete the study of the charmonium spectrum by means of pf annihilations, obtained by intersecting the Fermilab Antiprotn Accumulator with an internal hydrogen jet target. In this paper we report the preliminary results from the 1996/1997 fixed target ru