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Nonquenched Isoscalar Spin-M1Excitations insd-Shell Nuclei

Authors :
P. von Neumann-Cosel
Hiroaki Matsubara
M. Yosoi
Lucia Popescu
Atsushi Tamii
Petr Navrátil
Hitoshi Nakada
Achim Richter
Wataru Horiuchi
Yukie Maeda
Katsumasa Fujita
R. Neveling
J. Carter
H. Okamura
Takahiro Kawabata
F. D. Smit
Yohei Shimizu
S. Kuroita
Yoshiko Sasamoto
Yasuhiko Yamada
Hiroshi Tokieda
Kichiji Hatanaka
Satoshi Sakaguchi
K. Suda
M. Itoh
Yuji Tameshige
Juzo Zenihiro
Masanori Dozono
B. Rubio
Yasuhiro Sakemi
I. Poltoratska
Harutaka Sakaguchi
Yoshitaka Fujita
T. Adachi
Y. Shimbara
Hisanori Fujita
Source :
Physical Review Letters. 115
Publication Year :
2015
Publisher :
American Physical Society (APS), 2015.

Abstract

Differential cross sections of isoscalar and isovector spin-M1 (0(+)→1(+)) transitions are measured using high-energy-resolution proton inelastic scattering at E(p)=295 MeV on (24)Mg, (28)Si, (32)S, and (36)Ar at 0°-14°. The squared spin-M1 nuclear transition matrix elements are deduced from the measured differential cross sections by applying empirically determined unit cross sections based on the assumption of isospin symmetry. The ratios of the squared nuclear matrix elements accumulated up to E(x)=16 MeV compared to a shell-model prediction are 1.01(9) for isoscalar and 0.61(6) for isovector spin-M1 transitions, respectively. Thus, no quenching is observed for isoscalar spin-M1 transitions, while the matrix elements for isovector spin-M1 transitions are quenched by an amount comparable with the analogous Gamow-Teller transitions on those target nuclei.

Details

ISSN :
10797114 and 00319007
Volume :
115
Database :
OpenAIRE
Journal :
Physical Review Letters
Accession number :
edsair.doi...........ffbe5ddfc06dfcb3146957b7256f7f63