References quoted in the XUNDL dataset: 150BA 150CS B- DECAY:152 MS:XUNDL-2

3 references found.

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


2017WA10

Chin.Phys.C 41, 030003 (2017)

M.Wang, G.Audi, F.G.Kondev, W.J.Huang, S.Naimi, X.Xu

The AME2016 atomic mass evaluation (II). Tables, graphs and references

ATOMIC MASSES A=1-295; compiled, evaluated atomic masses data.

doi: 10.1088/1674-1137/41/3/030003


2018BL06

Phys.Rev. C 98, 064610 (2018)

L.D.Blokhintsev, A.S.Kadyrov, A.M.Mukhamedzhanov, D.A.Savin

Extrapolation of scattering data to the negative-energy region. III. Application to the p - 16O system

NUCLEAR REACTIONS 16O(p, p)17F, E(cm)=0-2 MeV; calculated asymptotic normalization coefficients (ANCs) for g.s. and excited state of 17F, polynomial approximation of Κ0(E), Κ2(E), Δ0(E), and Δ2(E) functions using the effective-range function (ERF) and the Δ methods. Comparison with experimental data.

doi: 10.1103/PhysRevC.98.064610


2018LI06

Phys.Rev. C 97, 024305 (2018)

R.Lica, for the IDS Collaboration

Evolution of deformation in neutron-rich Ba isotopes up to A=150

RADIOACTIVITY 148,150Cs(β-), (β-n)[from U(p, X), E=1.4 GeV using General Purpose Separator (GPS) at ISOLDE-CERN]; measured Eγ, Iγ, Eβ, γγ- and βγ-coin, half-lives of the decays of 148,150Cs, half-lives of first 2+ states in 148,150Ba by fast-timing technique using four HPGe detectors, three LaBr3(Ce) detectors for fast-timing and three plastic scintillators for β particle detection. 148,150Ba; deduced levels, J, π, B(E2), deformations, β feedings, logft. 148Cs; deduced %β-n for its decay. Comparison with previous experimental data, and with symmetry conserving configuration mixing (SCCM) calculations. Level systematics in neighboring nuclides.

NUCLEAR STRUCTURE 142,144,146,148,150Ba; calculated potential energy surfaces in (β2, β3) plane; deduced evolution of quadrupoledeformed shapes with a definite octupolar character. Symmetry conserving configuration mixing (SCCM) calculations. Comparison with experimental data.

doi: 10.1103/PhysRevC.97.024305