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Double-magic nature of 132Sn and 208Pb through lifetime and cross-section measurements

Authors :
J M, Allmond
A E, Stuchbery
J R, Beene
A, Galindo-Uribarri
J F, Liang
E, Padilla-Rodal
D C, Radford
R L, Varner
A, Ayres
J C, Batchelder
A, Bey
C R, Bingham
M E, Howard
K L, Jones
B, Manning
P E, Mueller
C D, Nesaraja
S D, Pain
W A, Peters
A, Ratkiewicz
K T, Schmitt
D, Shapira
M S, Smith
N J, Stone
D W, Stracener
C-H, Yu
Source :
Physical review letters. 112(17)
Publication Year :
2014

Abstract

Single-neutron states in (133)Sn and (209)Pb, which are analogous to single-electron states outside of closed atomic shells in alkali metals, were populated by the ((9)Be, (8)Be) one-neutron transfer reaction in inverse kinematics using particle-γ coincidence spectroscopy. In addition, the s(1/2) single-neutron hole-state candidate in (131)Sn was populated by ((9)Be, (10)Be). Doubly closed-shell (132)Sn (radioactive) and (208)Pb (stable) beams were used at sub-Coulomb barrier energies of 3 MeV per nucleon. Level energies, γ-ray transitions, absolute cross sections, spectroscopic factors, asymptotic normalization coefficients, and excited-state lifetimes are reported and compared with shell-model expectations. The results include a new transition and precise level energy for the 3p(1/2) candidate in (133)Sn, new absolute cross sections for the 1h(9/2) candidate in (133)Sn and 3s(1/2) candidate in (131)Sn, and new lifetimes for excited states in (133)Sn and (209)Pb. This is the first report on excited-state lifetimes of (133)Sn, which allow for a unique test of the nuclear shell model and (132)Sn double-shell closure.

Details

ISSN :
10797114
Volume :
112
Issue :
17
Database :
OpenAIRE
Journal :
Physical review letters
Accession number :
edsair.pmid..........4ef04f5333213abc7aa4fd923052a41d