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Three-body nature of N(*) and Δ(*) resonances from sequential decay chains.

Authors :
Thiel A
Sokhoyan V
Gutz E
van Pee H
Anisovich AV
Bacelar JC
Bantes B
Bartholomy O
Bayadilov D
Beck R
Beloglazov Y
Castelijns R
Crede V
Dutz H
Elsner D
Ewald R
Frommberger F
Fuchs M
Funke Ch
Gregor R
Gridnev A
Hillert W
Hoffmeister P
Horn I
Jaegle I
Junkersfeld J
Kalinowsky H
Kammer S
Kleber V
Klein F
Klein F
Klempt E
Kotulla M
Krusche B
Lang M
Löhner H
Lopatin I
Lugert S
Mertens T
Messchendorp JG
Metag V
Metsch B
Nanova M
Nikonov V
Novinski D
Novotny R
Ostrick M
Pant L
Pfeiffer M
Piontek D
Roy A
Sarantsev AV
Schmidt Ch
Schmieden H
Shende S
Süle A
Sumachev VV
Szczepanek T
Thoma U
Trnka D
Varma R
Walther D
Wendel Ch
Wilson A
Source :
Physical review letters [Phys Rev Lett] 2015 Mar 06; Vol. 114 (9), pp. 091803. Date of Electronic Publication: 2015 Mar 04.
Publication Year :
2015

Abstract

The Nπ^{0}π^{0} decays of positive-parity N^{*} and Δ^{*} resonances at about 2 GeV are studied at ELSA by photoproduction of two neutral pions off protons. The data reveal clear evidence for several intermediate resonances: Δ(1232), N(1520)3/2^{-}, and N(1680)5/2^{+}, with spin parities J^{P}=3/2^{+}, 3/2^{-}, and 5/2^{+}. The partial wave analysis (within the Bonn-Gatchina approach) identifies N(1440)1/2^{+} and the N(ππ)_{S wave} (abbreviated as Nσ here) as further isobars and assigns the final states to the formation of nucleon and Δ resonances and to nonresonant contributions. We observe the known Δ(1232)π decays of Δ(1910)1/2^{+}, Δ(1920)3/2^{+}, Δ(1905)5/2^{+}, Δ(1950)7/2^{+}, and of the corresponding spin-parity series in the nucleon sector, N(1880)1/2^{+}, N(1900)3/2^{+}, N(2000)5/2^{+}, and N(1990)7/2^{+}. For the nucleon resonances, these decay modes are reported here for the first time. Further new decay modes proceed via N(1440)1/2^{+}π, N(1520)3/2^{-}π, N(1680)5/2^{+}π, and Nσ. The latter decay modes are observed in the decay of N^{*} resonances and at most weakly in Δ^{*} decays. It is argued that these decay modes provide evidence for a 3-quark nature of N^{*} resonances rather than a quark-diquark structure.

Details

Language :
English
ISSN :
1079-7114
Volume :
114
Issue :
9
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
25793801
Full Text :
https://doi.org/10.1103/PhysRevLett.114.091803