Author:
Ertoprak A.,Qi C.,Cederwall B.,Doncel M.,Jakobsson U.,Nyakó B. M.,Jaworski G.,Davies P.,de France G.,Kuti I.,Napoli D. R.,Wadsworth R.,Ghugre S. S.,Raut R.,Akkus B.,Al Azri H.,Algora A.,de Angelis G.,Atac A.,Bäck T.,Boso A.,Clément E.,Debenham D. M.,Dombrádi Zs.,Ertürk S.,Gadea A.,Ghazi Moradi F.,Gottardo A.,Hüyük T.,Ideguchi E.,Li H.,Michelagnoli C.,Modamio V.,Nyberg J.,Palacz M.,Petrache C. M.,Recchia F.,Sandzelius M.,Siciliano M.,Sohler D.,Timár J.,Valiente-Dobón J. J.,Xiao Z. G.
Abstract
AbstractLifetimes of negative-parity states have been determined in the neutron deficient semi-magic (N = 50) nucleus $$^{95}\mathrm {Rh}$$
95
Rh
. The fusion-evaporation reaction $$^{58}Ni(^{40}Ca, 3p)$$
58
N
i
(
40
C
a
,
3
p
)
was used to populate high-spin states in $$^{95}\mathrm {Rh}$$
95
Rh
at the Grand Accélérateur National d’Ions Lourds (GANIL) accelerator facility. The results were obtained using the Doppler Shift Attenuation Method (DSAM) based on the Doppler broadened line shapes produced during the slowing down process of the residual nuclei in a thick $$6\;\mathrm {mg/cm}^2$$
6
mg
/
cm
2
metallic target. B(M1) and B(E2) reduced transition strengths are compared with predictions from large-scale shell-model calculations.
Funder
Royal Institute of Technology
Publisher
Springer Science and Business Media LLC
Subject
Nuclear and High Energy Physics
Cited by
2 articles.
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