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Deformation effects on isoscalar giant resonances in Mg 24

Authors :
S. Kishi
Takahiro Kawabata
T. Murakami
T. Peach
M. Yosoi
P. V. Madhusudhana Rao
Harutaka Sakaguchi
U. Garg
D. Patel
S. Terashima
Kenichi Yoshida
Hidetoshi Akimune
Y. K. Gupta
J. T. Matta
Mohsen Harakeh
M. Fujiwara
M. Itoh
J. Hoffman
Masaki Uchida
K. Nakanishi
Y. Yasuda
Hitoshi Hashimoto
K. Hara
Research unit Nuclear & Hadron Physics
Source :
Physical Review C, 93(4):044324. AMER PHYSICAL SOC
Publication Year :
2016

Abstract

Strength distributions for isoscalar giant resonances with multipolarity $L\ensuremath{\le}2$ have been determined in $^{24}\mathrm{Mg}$ from ``instrumental background-free'' inelastic scattering of 386-MeV $\ensuremath{\alpha}$ particles at extreme forward angles, including ${0}^{\ensuremath{\circ}}$. The isoscalar $E0, E1$, and $E2$ strengths are observed to be $57\ifmmode\pm\else\textpm\fi{}7%, 111.{1}_{\ensuremath{-}7.2}^{+10.9}%$, and $148.6\ifmmode\pm\else\textpm\fi{}7.3%$, respectively, of their energy-weighted sum rules in the excitation energy range of 6 to 35 MeV. The isoscalar giant monopole (ISGMR) and quadrupole (ISGQR) resonances exhibit a prominent $K$ splitting which is consistent with microscopic theory for a prolate-deformed ground state of $^{24}\mathrm{Mg}$. For the ISGQR it is due to splitting of the three $K$ components, whereas for the ISGMR it is due to its coupling to the $K=0$ component of the ISGQR. Deformation effects on the isoscalar giant dipole resonance are less pronounced, however.

Details

Language :
English
ISSN :
24699985
Volume :
93
Issue :
4
Database :
OpenAIRE
Journal :
Physical Review C
Accession number :
edsair.doi.dedup.....4ba8bff2aea9e741d60471aab9c0fa09