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Abstract
The radioactive isotope In-107 was studied using sub-barrier Coulomb excitation at the REX-ISOLDE facility at CERN. Two gamma rays were observed during the experiment, corresponding to the low-lying 11/2(+) and 3/2(-)states. The reduced transition probability of the 11/2(+) state was determined with the semiclassical Coulomb excitation code GOSIA2. The result is discussed in comparison to large-scale shell-model calculations, previous unified-model calculations, and earlier Coulomb excitation measurements in the odd-mass In isotopes.
Keywords
UNIFIED DESCRIPTION, DECAY, ODD-MASS, NUCLEAR-DATA SHEETS, SN-107, STATES, IONS

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Please use this url to cite or link to this publication:

MLA
DiJulio, DD, J Cederkall, C Fahlander, et al. “Coulomb Excitation of 107In.” PHYSICAL REVIEW C 87.1 (2013): n. pag. Print.
APA
DiJulio, D., Cederkall, J., Fahlander, C., Ekström, A., Hjorth-Jensen, M., Albers, M., Bildstein, V., et al. (2013). Coulomb excitation of 107In. PHYSICAL REVIEW C, 87(1).
Chicago author-date
DiJulio, DD, J Cederkall, C Fahlander, A Ekström, M Hjorth-Jensen, M Albers, V Bildstein, et al. 2013. “Coulomb Excitation of 107In.” Physical Review C 87 (1).
Chicago author-date (all authors)
DiJulio, DD, J Cederkall, C Fahlander, A Ekström, M Hjorth-Jensen, M Albers, V Bildstein, A Blazhev, I Darby, T Davinson, H De Witte, J Diriken, C Fransen, K Geibel, R Gernhäuser, A Görgen, H Hess, Kristiaan Heyde, J Iwanicki, R Lutter, P Reiter, M Scheck, M Seidlitz, S Siem, J Taprogge, GM Tveten, J Van de Walle, D Voulot, N Warr, F Wenander, and K Wimmer. 2013. “Coulomb Excitation of 107In.” Physical Review C 87 (1).
Vancouver
1.
DiJulio D, Cederkall J, Fahlander C, Ekström A, Hjorth-Jensen M, Albers M, et al. Coulomb excitation of 107In. PHYSICAL REVIEW C. 2013;87(1).
IEEE
[1]
D. DiJulio et al., “Coulomb excitation of 107In,” PHYSICAL REVIEW C, vol. 87, no. 1, 2013.
@article{3170019,
  abstract     = {The radioactive isotope In-107 was studied using sub-barrier Coulomb excitation at the REX-ISOLDE facility at CERN. Two gamma rays were observed during the experiment, corresponding to the low-lying 11/2(+) and 3/2(-)states. The reduced transition probability of the 11/2(+) state was determined with the semiclassical Coulomb excitation code GOSIA2. The result is discussed in comparison to large-scale shell-model calculations, previous unified-model calculations, and earlier Coulomb excitation measurements in the odd-mass In isotopes.},
  articleno    = {017301},
  author       = {DiJulio, DD and Cederkall, J and Fahlander, C and Ekström, A and Hjorth-Jensen, M and Albers, M and Bildstein, V and Blazhev, A and Darby, I and Davinson, T and De Witte, H and Diriken, J and Fransen, C and Geibel, K and Gernhäuser, R and Görgen, A and Hess, H and Heyde, Kristiaan and Iwanicki, J and Lutter, R and Reiter, P and Scheck, M and Seidlitz, M and Siem, S and Taprogge, J and Tveten, GM and Van de Walle, J and Voulot, D and Warr, N and Wenander, F and Wimmer, K},
  issn         = {0556-2813},
  journal      = {PHYSICAL REVIEW C},
  keywords     = {UNIFIED DESCRIPTION,DECAY,ODD-MASS,NUCLEAR-DATA SHEETS,SN-107,STATES,IONS},
  language     = {eng},
  number       = {1},
  pages        = {4},
  title        = {Coulomb excitation of 107In},
  url          = {http://dx.doi.org/10.1103/PhysRevC.87.017301},
  volume       = {87},
  year         = {2013},
}

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