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Isomer decay spectroscopy of 164Sm and 166Gd: midshell collectivity around N=100

Authors :
Patel, Zena
Söderström, Pär-Anders
Podolyák, Zs.
Regan, P. H.
Walker, P. M.
Watanabe, Hiroshi
Ideguchi, Eiji
Simpson, G. S.
Liu, H. L.
Nishimura, Shunji
Wu, Q.
Xu, F. R.
Browne, Frank
Doornenbal, Pieter
Lorusso, Giuseppe
Rice, Simon
Sinclair, Laura
Sumikama, Toshiyuki
Wu, J.
Xu, Z. Y.
Aoi, Nori
Baba, H.
Bello Garrote, F. L.
Benzoni, G.
Daido, Rie
Fang, Yifan
Fukuda, Naoki
Gey, Guillaume
Go, Shintaro
Gottardo, A.
Inabe, Naohiro
Isobe, Tadaaki
Kameda, Daisuke
Kobayashi, K.
Kobayashi, Masao
Komatsubara, Tetsuro
Kojouharov, I.
Kubo, Toshiyuki
Kurz, N.
Kuti, István
Li, Z.
Matsushita, Masafumi
Michimasa, Shin'ichiro
Moon, Chang-Bum
Nishibata, Hiroki
Nishizuka, Ippei
Odahara, Atsuko
Şahin, E.
Sakurai, H.
Schaffner, H.
Suzuki, Hiroshi
Takeda, Hiroyuki
Tanaka, Mana
Taprogge, Jan
Vajta, Zsolt
Yagi, Ayumi
Yokoyama, Rin
Source :
Physical review letters. 113(26)
Publication Year :
2014

Abstract

Excited states in the N=102 isotones 166Gd and 164Sm have been observed following isomeric decay for the first time at RIBF, RIKEN. The half-lives of the isomeric states have been measured to be 950(60) and 600(140) ns for 166Gd and 164Sm, respectively. Based on the decay patterns and potential energy surface calculations, including β6 deformation, a spin and parity of 6- has been assigned to the isomeric states in both nuclei. Collective observables are discussed in light of the systematics of the region, giving insight into nuclear shape evolution. The decrease in the ground-band energies of 166Gd and 164Sm (N=102) compared to 164Gd and 162Sm (N=100), respectively, presents evidence for the predicted deformed shell closure at N=100.

Details

ISSN :
10797114
Volume :
113
Issue :
26
Database :
OpenAIRE
Journal :
Physical review letters
Accession number :
edsair.pmid.dedup....8263450d86a4c0a2bb21804e44b0f366