Evidence for a spin-aligned neutron–proton paired phase from the level structure of 92Pd - Nature

Evidence for a spin-aligned neutron–proton paired phase from the level structure of 92Pd - Nature

Cederwall, B.;Moradi, F. Ghazi;Bäck, T.;Johnson, A.;Blomqvist, J.;Clément, E.;de France, G.;Wadsworth, R.;Andgren, K.;Lagergren, K.;Dijon, A.;Jaworski, G.;Liotta, R.;Qi, C.;Nyakó, B. M.;Nyberg, J.;Palacz, M.;Al-Azri, H.;Algora, A.;de Angelis, G.;Ataç, A.;Bhattacharyya, S.;Brock, T.;Brown, J. R.;Davies, P.;Di Nitto, A.;Dombrádi, Zs.;Gadea, A.;Gál, J.;Hadinia, B.;Johnston-Theasby, F.;Joshi, P.;Juhász, K.;Julin, R.;Jungclaus, A.;Kalinka, G.;Kara, S. O.;Khaplanov, A.;Kownacki, J.;La Rana, G.;Lenzi, S. M.;Molnár, J.;Moro, R.;Napoli, D. R.;Singh, B. S. Nara;Persson, A.;Recchia, F.;Sandzelius, M.;Scheurer, J.-N.;Sletten, G.;Sohler, D.;Söderström, P.-A.;Taylor, M. J.;Timár, J.;Valiente-Dobón, J. J.;Vardaci, E.;Williams, S.;Cederwall, B.;Moradi, F. Ghazi;Bäck, T.;Johnson, A.;Blomqvist, J.;Clément, E.;de France, G.;Wadsworth, R.;Andgren, K.;Lagergren, K.;Dijon, A.;Jaworski, G.;Liotta, R.;Qi, C.;Nyakó, B. M.;Nyberg, J.;Palacz, M.;Al-Azri, H.;Algora, A.;de Angelis, G.;Ataç, A.;Bhattacharyya, S.;Brock, T.;Brown, J. R.;Davies, P.;Di Nitto, A.;Dombrádi, Zs.;Gadea, A.;Gál, J.;Hadinia, B.;Johnston-Theasby, F.;Joshi, P.;Juhász, K.;Julin, R.;Jungclaus, A.;Kalinka, G.;Kara, S. O.;Khaplanov, A.;Kownacki, J.;La Rana, G.;Lenzi, S. M.;Molnár, J.;Moro, R.;Napoli, D. R.;Singh, B. S. Nara;Persson, A.;Recchia, F.;Sandzelius, M.;Scheurer, J.-N.;Sletten, G.;Sohler, D.;Söderström, P.-A.;Taylor, M. J.;Timár, J.;Valiente-Dobón, J. J.;Vardaci, E.;Williams, S.;
Nature 2010 Vol. 469 pp. 68-71
82
b.2010natureevidence

Abstract

Nuclei with equal neutron (N) and proton (Z) numbers show enhanced correlations that have been predicted to favour an unusual type of pairing, distinct from normal nuclear superfluidity. Here, technically challenging observations are reported of excited states in the N = Z = 46 nucleus 92Pd, from which evidence is inferred for a type of spin-aligned structure in the ground and low-lying excited states, not established in nuclei before and differing from previous predictions.

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