Gamma Decay of Unbound Neutron-Hole States in ^{133}Sn

Excited states in the nucleus ^{133}Sn, with one neutron outside the double magic ^{132}Sn core, were populated following one-neutron knockout from a ^{134}Sn beam on a carbon target at relativistic energies at the Radioactive Isotope Beam Factory at RIKEN. Besides the γ rays emitted in the decay of...

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Veröffentlicht in:Physical review letters 2017-05, Vol.118 (20), p.202502-202502
Hauptverfasser: Vaquero, V, Jungclaus, A, Doornenbal, P, Wimmer, K, Gargano, A, Tostevin, J A, Chen, S, Nácher, E, Sahin, E, Shiga, Y, Steppenbeck, D, Taniuchi, R, Xu, Z Y, Ando, T, Baba, H, Garrote, F L Bello, Franchoo, S, Hadynska-Klek, K, Kusoglu, A, Liu, J, Lokotko, T, Momiyama, S, Motobayashi, T, Nagamine, S, Nakatsuka, N, Niikura, M, Orlandi, R, Saito, T, Sakurai, H, Söderström, P A, Tveten, G M, Vajta, Zs, Yalcinkaya, M
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Sprache:eng
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Zusammenfassung:Excited states in the nucleus ^{133}Sn, with one neutron outside the double magic ^{132}Sn core, were populated following one-neutron knockout from a ^{134}Sn beam on a carbon target at relativistic energies at the Radioactive Isotope Beam Factory at RIKEN. Besides the γ rays emitted in the decay of the known neutron single-particle states in ^{133}Sn additional γ strength in the energy range 3.5-5.5 MeV was observed for the first time. Since the neutron-separation energy of ^{133}Sn is low, S_{n}=2.402(4)  MeV, this observation provides direct evidence for the radiative decay of neutron-unbound states in this nucleus. The ability of electromagnetic decay to compete successfully with neutron emission at energies as high as 3 MeV above threshold is attributed to a mismatch between the wave functions of the initial and final states in the latter case. These findings suggest that in the region southeast of ^{132}Sn nuclear structure effects may play a significant role in the neutron versus γ competition in the decay of unbound states. As a consequence, the common neglect of such effects in the evaluation of the neutron-emission probabilities in calculations of global β-decay properties for astrophysical simulations may have to be reconsidered.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.118.202502