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Probing the single-particle character of rotational states in $^{19}$F using a short-lived isomeric beam

Authors :
D, Santiago-Gonzalez
K, Auranen
M L, Avila
A D, Ayangeakaa
B B, Back
S, Bottoni
M P, Carpenter
J, Chen
C M, Deibel
A A, Hood
C R, Hoffman
R V F, Janssens
C L, Jiang
B P, Kay
S A, Kuvin
A, Lauer
J P, Schiffer
J, Sethi
R, Talwar
I, Wiedenhöver
J, Winkelbauer
S, Zhu
Publication Year :
2018

Abstract

A beam containing a substantial component of both the $J^{\pi}=5^+$, $T_{1/2}=162$ ns isomeric state of $^{18}$F and its $1^+$, 109.77-min ground state has been utilized to study members of the ground-state rotational band in $^{19}$F through the neutron transfer reaction $(d$,$p)$ in inverse kinematics. The resulting spectroscopic strengths confirm the single-particle nature of the 13/2$^+$ band-terminating state. The agreement between shell-model calculations, using an interaction constructed within the $sd$ shell, and our experimental results reinforces the idea of a single-particle/collective duality in the descriptions of the structure of atomic nuclei.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....3210ea2396b27b8c1f9c6eb2714e7d10