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Population of the2ms+mixed-symmetry state ofBa140with theα-transfer reaction

Authors :
A. Gadea
W. Korten
D. Mengoni
P. A. Söderström
S. Lunardi
C. Michelagnoli
G. de Angelis
A. Goergen
V. Modamio
Hans-Jurgen E. Hess
D. Bazzacco
S. M. Lenzi
A. Pullia
J. Leske
J. Eberth
D. R. Napoli
M. Reese
F. C. L. Crespi
R. Menegazzo
C. A. Ur
P. Reiter
E. Farnea
Ch. Theisen
J. Jolie
B. Birkenbach
A. Bracco
P. Désesquelles
P. R. John
C. Bauer
J. J. Valiente-Dobón
J. Grebosz
A. Gottardo
A. Jungclaus
M. D. Salsac
Begoña Quintana
Norbert Pietralla
D. Rosso
C. Stahl
O. Stezowski
E. Sahin
F. Recchia
Source :
Physical Review C. 92
Publication Year :
2015
Publisher :
American Physical Society (APS), 2015.

Abstract

Background: Identification of proton-neutron mixed-symmetric one-quadrupole phonon excitations (the 2(ms)(+) states) of atomic nuclei provides information on the isovector part of the residual nucleon-nucleon interaction. It was predicted that the 2(ms)(+) state of particular nuclei close to the U(5) limit of the interacting boson model, in particular Ba-140, should be considerably populated by alpha-transfer reactions [C. E. Alonso et al., Phys. Rev. C 78, 017301 (2008)]. Purpose: We aim at the identification of the 2(ms)(+) mixed-symmetry state (MSS) of radioactive Ba-140 and investigate its population by the alpha-transfer reaction as a suitable tool to selectively populate MSSs and as a potential new signature for its mixed-symmetric character. Method: A gamma-ray spectroscopy experiment was performed in inverse kinematics in order to populate the 2(ms)(+) state of Ba-140 by alpha-transfer from a C-nat target on Xe-136 beam ions. The population of the candidate for the 2(ms)(+) state of Ba-140 was measured relative to the population of the 2(1)(+) state. Results: The candidate for the 2(ms)(+) state of Ba-140 was populated by a transfer three times weaker than predicted. Another 2(+) state that can be ruled out as the MSS was in turn as strongly populated by the a transfer as predicted for the MSS. Conclusions: The relative population of 2(+) states by alpha-transfer cannot serve as a new signature for MSSs, since other 2(+) states are also strongly populated. Nevertheless, the substantial population of the MSS candidate of Ba-140 by alpha transfer qualifies this type of reaction as suitable tool to excite MSSs and study their electromagnetic decay properties.

Details

ISSN :
1089490X and 05562813
Volume :
92
Database :
OpenAIRE
Journal :
Physical Review C
Accession number :
edsair.doi...........f6e8f6b383c8d6e0c8fb01b7a166dba8
Full Text :
https://doi.org/10.1103/physrevc.92.044324