Back to Search Start Over

Impact of shell evolution on Gamow-Teller beta decay from a high-spin long-lived isomer in Ag-127

Authors :
Watanabe, H.
Yuan, C. X.
Lorusso, G.
Nishimura, S.
Xu, Z. Y.
Sumikama, T.
Soderstrom, P-A
Doornenbal, P.
Browne, F.
Gey, G.
Jung, H. S.
Taprogge, J.
Vajta, Zs
Wang, H. K.
Wu, J.
Yagi, A.
Baba, H.
Benzoni, G.
Chae, K. Y.
Crespi, F. C. L.
Fukuda, N.
Gernhauser, R.
Inabe, N.
Isobe, T.
Jungclaus, A.
Kameda, D.
Kim, G. D.
Kim, Y. K.
Kojouharov, I
Kondev, F. G.
Kubo, T.
Kurz, N.
Kwon, Y. K.
Lane, G. J.
Li, Z.
Moon, C-B
Montaner-Piza, A.
Moschner, K.
Naqvi, F.
Niikura, M.
Nishibata, H.
Nishimura, D.
Odahara, A.
Orlandi, R.
Patel, Z.
Podolyak, Zs
Sakurai, H.
Schaffner, H.
Simpson, G. S.
Steiger, K.
Suzuki, H.
Takeda, H.
Wendt, A.
Yoshinaga, K.
Watanabe, H.
Yuan, C. X.
Lorusso, G.
Nishimura, S.
Xu, Z. Y.
Sumikama, T.
Soderstrom, P-A
Doornenbal, P.
Browne, F.
Gey, G.
Jung, H. S.
Taprogge, J.
Vajta, Zs
Wang, H. K.
Wu, J.
Yagi, A.
Baba, H.
Benzoni, G.
Chae, K. Y.
Crespi, F. C. L.
Fukuda, N.
Gernhauser, R.
Inabe, N.
Isobe, T.
Jungclaus, A.
Kameda, D.
Kim, G. D.
Kim, Y. K.
Kojouharov, I
Kondev, F. G.
Kubo, T.
Kurz, N.
Kwon, Y. K.
Lane, G. J.
Li, Z.
Moon, C-B
Montaner-Piza, A.
Moschner, K.
Naqvi, F.
Niikura, M.
Nishibata, H.
Nishimura, D.
Odahara, A.
Orlandi, R.
Patel, Z.
Podolyak, Zs
Sakurai, H.
Schaffner, H.
Simpson, G. S.
Steiger, K.
Suzuki, H.
Takeda, H.
Wendt, A.
Yoshinaga, K.
Publication Year :
2021

Abstract

The change of the shell structure in atomic nuclei, so-called nuclear shell evolution, occurs due to changes of major configurations through particle-hole excitations inside one nucleus, as well as due to variation of the number of constituent protons or neutrons. We have investigated how the shell evolution affects Gamow-Teller (GT) transitions that dominate the beta decay in the region below Sn-132 using the newly obtained experimental data on a long-lived isomer in Ag-127. The T-1/2 = 67.5(9) ms isomer has been identified with a spin and parity of (27/2(+)) at an excitation energy of 1942(-20)(+14) keV, and found to decay via an internal transition of an E3 character, which competes with the dominant beta-decay branches towards the high-spin states in Cd-127. The underlying mechanism of a strong GT transition from the Ag-127 isomer is discussed in terms of configuration-dependent optimization of the effective single-particle energies in the framework of a shell-model approach. (C) 2021 The Authors. Published by Elsevier B.V.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1312208311
Document Type :
Electronic Resource