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High-spin structure of Xe-134

Authors :
Vogt, A.
Birkenbach, B.
Reiter, P.
Blazhev, A.
Siciliano, M.
Valiente-Dobon, J. J.
Wheldon, C.
Bazzacco, D.
Bowry, M.
Bracco, A.
Bruyneel, B.
Chakrawarthy, R. S.
Chapman, R.
Cline, D.
Corradi, L.
Crespi, F. C. L.
Cromaz, M.
de Angelis, G.
Eberth, J.
Fallon, P.
Farnea, E.
Fioretto, E.
Freeman, S. J.
Gadea, A.
Geibel, K.
Gelletly, W.
Gengelbach, Aila
Giaz, A.
Gorgen, A.
Gottardo, A.
Hayes, A. B.
Hess, H.
Hua, H.
John, P. R.
Jolie, J.
Jungclaus, A.
Korten, W.
Lee, I. Y.
Leoni, S.
Liang, X.
Lunardi, S.
Macchiavelli, A. O.
Menegazzo, R.
Mengoni, D.
Michelagnoli, C.
Mijatovic, T.
Montagnoli, G.
Montanari, D.
Napoli, D.
Pearson, C. J.
Pellegri, L.
Podolyak, Zs.
Pollarolo, G.
Pullia, A.
Radeck, F.
Recchia, F.
Regan, P. H.
Sahin, E.
Scarlassara, F.
Sletten, G.
Smith, J. F.
Söderström, Pär-Anders
Stefanini, A. M.
Steinbach, T.
Stezowski, O.
Szilner, S.
Szpak, B.
Teng, R.
Ur, C.
Vandone, V.
Ward, D.
Warner, D. D.
Wiens, A.
Wu, C. Y.
Vogt, A.
Birkenbach, B.
Reiter, P.
Blazhev, A.
Siciliano, M.
Valiente-Dobon, J. J.
Wheldon, C.
Bazzacco, D.
Bowry, M.
Bracco, A.
Bruyneel, B.
Chakrawarthy, R. S.
Chapman, R.
Cline, D.
Corradi, L.
Crespi, F. C. L.
Cromaz, M.
de Angelis, G.
Eberth, J.
Fallon, P.
Farnea, E.
Fioretto, E.
Freeman, S. J.
Gadea, A.
Geibel, K.
Gelletly, W.
Gengelbach, Aila
Giaz, A.
Gorgen, A.
Gottardo, A.
Hayes, A. B.
Hess, H.
Hua, H.
John, P. R.
Jolie, J.
Jungclaus, A.
Korten, W.
Lee, I. Y.
Leoni, S.
Liang, X.
Lunardi, S.
Macchiavelli, A. O.
Menegazzo, R.
Mengoni, D.
Michelagnoli, C.
Mijatovic, T.
Montagnoli, G.
Montanari, D.
Napoli, D.
Pearson, C. J.
Pellegri, L.
Podolyak, Zs.
Pollarolo, G.
Pullia, A.
Radeck, F.
Recchia, F.
Regan, P. H.
Sahin, E.
Scarlassara, F.
Sletten, G.
Smith, J. F.
Söderström, Pär-Anders
Stefanini, A. M.
Steinbach, T.
Stezowski, O.
Szilner, S.
Szpak, B.
Teng, R.
Ur, C.
Vandone, V.
Ward, D.
Warner, D. D.
Wiens, A.
Wu, C. Y.
Publication Year :
2016

Abstract

Detailed spectroscopic information on the N similar to 82 nuclei is necessary to benchmark shell-model calculations in the region. The nuclear structure above long-lived isomers in Xe-134 is investigated after multinucleon transfer (MNT) and actinide fission. Xenon-134 was populated as (i) a transfer product in Xe-136 + U-238 and Xe-136 + Pb-208 MNT reactions and (ii) as a fission product in the Xe-136 + U-238 reaction employing the high-resolution Advanced Gamma Tracking Array (AGATA). Trajectory reconstruction has been applied for the complete identification of beamlike transfer products with the magnetic spectrometer PRISMA. The Xe-136 + Pt-198 MNT reaction was studied with the gamma-ray spectrometer GAMMASPHERE in combination with the gas detector array Compact Heavy Ion Counter (CHICO). Several high-spin states in Xe-134 on top of the two long-lived isomers are discovered based on gamma gamma-coincidence relationships and information on the gamma-ray angular distributions as well as excitation energies from the total kinetic energy loss and fission fragments. The revised level scheme of Xe-134 is extended up to an

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1233461681
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1103.PhysRevC.93.054325