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Role of the Δ Resonance in the Population of a Four-Nucleon State in the 56Fe → 54Fe Reaction at Relativistic Energies

Authors :
Podolyák, Zs
Shand, C. M.
Lalovic, Natasa
Gerl, J.
Rudolph, D.
Alexander, T.
Boutachkov, P.
Cortés, M. L.
Górska, M.
Kojouharov, I.
Kurz, N.
Louchart, C.
Merchán, E.
Michelagnoli, C.
Pérez-Vidal, R. M.
Pietri, S.
Ralet, D.
Reese, M.
Schaffner, H.
Stahl, Ch
Weick, H.
Ameil, F.
De Angelis, G.
Arici, T.
Carroll, R.
Dombrádi, Zs
Gadea, A.
Golubev, P.
Lettmann, M.
Lizarazo, C.
Mahboub, D.
Pai, H.
Patel, Z.
Pietralla, N.
Regan, P. H.
Sarmiento, L. G.
Wieland, O.
Wilson, E.
Birkenbach, B.
Bruyneel, B.
Burrows, I.
Charles, L.
Clément, E.
Crespi, F. C L
Cullen, D. M.
Désesquelles, P.
Eberth, J.
González, V.
Habermann, T.
Harkness-Brennan, L.
Hess, H.
Judson, D. S.
Jungclaus, A.
Korten, W.
Labiche, M.
Maj, A.
Mengoni, D.
Napoli, D. R.
Pullia, A.
Quintana, B.
Rainovski, G.
Reiter, P.
Salsac, M. D.
Sanchis, E.
Valiente Dóbon, J. J.
Podolyák, Zs
Shand, C. M.
Lalovic, Natasa
Gerl, J.
Rudolph, D.
Alexander, T.
Boutachkov, P.
Cortés, M. L.
Górska, M.
Kojouharov, I.
Kurz, N.
Louchart, C.
Merchán, E.
Michelagnoli, C.
Pérez-Vidal, R. M.
Pietri, S.
Ralet, D.
Reese, M.
Schaffner, H.
Stahl, Ch
Weick, H.
Ameil, F.
De Angelis, G.
Arici, T.
Carroll, R.
Dombrádi, Zs
Gadea, A.
Golubev, P.
Lettmann, M.
Lizarazo, C.
Mahboub, D.
Pai, H.
Patel, Z.
Pietralla, N.
Regan, P. H.
Sarmiento, L. G.
Wieland, O.
Wilson, E.
Birkenbach, B.
Bruyneel, B.
Burrows, I.
Charles, L.
Clément, E.
Crespi, F. C L
Cullen, D. M.
Désesquelles, P.
Eberth, J.
González, V.
Habermann, T.
Harkness-Brennan, L.
Hess, H.
Judson, D. S.
Jungclaus, A.
Korten, W.
Labiche, M.
Maj, A.
Mengoni, D.
Napoli, D. R.
Pullia, A.
Quintana, B.
Rainovski, G.
Reiter, P.
Salsac, M. D.
Sanchis, E.
Valiente Dóbon, J. J.
Source :
Physical Review Letters; 117(22), no 222302 (2016); ISSN: 0031-9007
Publication Year :
2016

Abstract

The Fe54 nucleus was populated from a 56Fe beam impinging on a Be target with an energy of E/A=500 MeV. The internal decay via γ-ray emission of the 10+ metastable state was observed. As the structure of this isomeric state has to involve at least four unpaired nucleons, it cannot be populated in a simple two-neutron removal reaction from the 56Fe ground state. The isomeric state was produced in the low-momentum (-energy) tail of the parallel momentum (energy) distribution of 54Fe, suggesting that it was populated via the decay of the Δ0 resonance into a proton. This process allows the population of four-nucleon states, such as the observed isomer. Therefore, it is concluded that the observation of this 10+ metastable state in 54Fe is a consequence of the quark structure of the nucleons.

Details

Database :
OAIster
Journal :
Physical Review Letters; 117(22), no 222302 (2016); ISSN: 0031-9007
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1000606827
Document Type :
Electronic Resource