References quoted in the XUNDL dataset: 143BA 252CF SF DECAY:XUNDL-4

4 references found.

Clicking on a keynumber will list datasets that reference the given article.


1974CLZX

Proc.Symp.Phys.Chem.Fission, 3rd, Rochester, N.Y. (1973), Int.At.En.Agency, Vienna, Vol.2, p.221 (1974)

R.G.Clark, L.E.Glendenin, W.L.Talbert, Jr.

Fission Fragment Isomers from Spontaneous Fission of 252Cf

RADIOACTIVITY, Fission 252Cf(SF); measured Eγ, Iγ, γf(t), Xγ-, γγ-coin. 87Br, 89Kr, 92Rb, 95,96,97Sr, 97,98Y, 99,100,101,102,103Zr, 102Nb, 103,104,106,107Mo, 105,107,108Tc, 109,110,111Ru, 109,111Rh, 132,134Sb, 134,135Te, 134,136,137I, 136,137Xe, 147,148,149Ce, 139,140,141Cs, 141,143,144,146Ba, 146,147La, 149,150,151Pr, 154Nd, 156,158Sm deduced transitions, T1/2, fission yields.


1979SC11

Z.Phys. A290, 359 (1979)

F.Schussler, J.Blachot, E.Monnand, B.Fogelberg, S.H.Feenstra, J.van Klinken, G.Jung, K.D.Wunsch

Nuclear Spectroscopy of Neutron-Rich A = 143 Nuclei

RADIOACTIVITY 143Cs, 143Ba [from fission]; measured Eγ, Iγ, I(ce), γγ-, βγ-coin; deduced Qβ, Iβ, log ft. 143Ba, 143La deduced levels, ICC, T1/2, J, π, multipolarity, configurations. Mass separation.


2020MO36

Phys.Rev. C 102, 054328 (2020)

C.Morse, A.O.Macchiavelli, H.L.Crawford, S.Zhu, C.Y.Wu, Y.Y.Wang, J.Meng, B.B.Back, B.Bucher, C.M.Campbell, M.P.Carpenter, J.Chen, R.M.Clark, M.Cromaz, P.Fallon, J.Henderson, R.V.F.Janssens, M.D.Jones, T.L.Khoo, F.G.Kondev, T.Lauritsen, I.Y.Lee, J.Li, D.Potterveld, C.Santamaria, G.Savard, D.Seweryniak, S.Stolze, D.Weisshaar

Quadrupole and octupole collectivity in 143Ba

NUCLEAR REACTIONS 208Pb(143Ba, 143Ba'), E=627.8 MeV, [143Ba beam from 252Cf SF at the CARIBU facility at ATLAS-ANL]; measured reaction products, Eγ, Iγ, scattered particles, (particle)γ-coin, and half-life of the first 9/2- level from (particle)γ-coin using GRETINA array of 11 Quad detector modules, each with four 36-fold segmented HPGe crystals for γ detection and CHICO2 array of 20 Parallel Plate Avalanche Counters (PPACs). 143Ba; deduced levels, J, π, Coulomb excitation γ-ray yields, E2 matrix elements using GOSIA least-squares analysis, B(E2), upper limit for E3 matrix element and B(E3), alignment plots, doubly decoupled structure. Comparison with Reflection-Asymmetric Triaxial Particle Rotor Model (RAT-PRM) calculations.

doi: 10.1103/PhysRevC.102.054328


2023BR07

Nucl.Phys. A1039, 122738 (2023)

N.T.Brewer, E.H.Wang, W.A.Yzaguirre, J.H.Hamilton, K.Nomura, A.V.Ramayya, S.H.Liu, J.K.Hwang, B.M.Musangu, J.M.Eldridge, C.J.Zachary, Y.X.Luo, J.O.Rasmussen, S.J.Zhu, C.Goodin, G.M.Ter-Akopian, A.V.Daniel, Yu.Ts.Oganessian

Octupole deformation in 143, 145, 146Ba

RADIOACTIVITY 252Cf(SF); measured decay products, Eγ, Iγ. 143,145,146Ba; deduced γ-ray energies and relative intensities, partial level scheme, angular correlations, octupole bands, J, π, B(E1)/B(E2). Comparison with IBM and IBFM calculations.

doi: 10.1016/j.nuclphysa.2023.122738