Search for the Pentaquark + via the p KX Reaction at J-PARC

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106,99 

Springer Theses

ISBN: 9811000107
ISBN 13: 9789811000102
Autor: Moritsu, Manabu
Verlag: Springer Verlag GmbH
Umfang: xiii, 123 S., 48 s/w Illustr., 38 farbige Illustr., 123 p. 86 illus., 38 illus. in color.
Erscheinungsdatum: 02.03.2016
Auflage: 1/2017
Produktform: Gebunden/Hardback
Einband: Gebunden

Nominated as an outstanding contribution by Kyoto University’s Physics Department in 2015Introduces the current status of the T+ pentaquark searchDescribes details of the experimental apparatus and analysis method of the J-PARC K1.8 beam line and superconducting kaon spectrometerIncludes supplementary material: sn.pub/extras

Artikelnummer: 8619079 Kategorie:

Beschreibung

This theses reports on an experimental search for an exotic hadron, +(1540) pentaquark, which is a genuine exotic hadron with a five-quark system of uuddsbar. The results of this book support that the existence of + was strongly constrained.  The + pentaquark was searched for via the - p  K- X reaction using a beam momentum of 2.01 GeV/c at the J-PARC hadron experimental facility, taking advantage of high-statistics and high-resolution compared with previous experiments, some of which claimed the evidence of +. In order to realize a good missing-mass resolution of 2 MeV, the beam spectrometer and superconducting kaon spectrometer were constructed. No clear peak was observed in the missing mass spectrum of the - p  K- X reaction, and the upper limit of the production cross section was found to be less than 0.28 b/sr at the 90% confidence level in a mass region of 1500-1560 MeV/c2. This upper limit is an order of magnitude smaller than that of the previous KEK experiment. Compared with a theoretical calculation using the effective Lagrangian approach, the decay width of + was evaluated. The upper limits on the decay width were estimated to be 0.36 and 1.9 MeV for the + spin-parity of 1/2+ and 1/2-, respectively. These are quite small for a width of ordinary hadron resonances, and the existence of + was strongly constrained and is doubtful.

Autorenporträt

Dr. Manabu Moritsu Physics Department, Kyoto University

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