References quoted in the ENSDF dataset: 206PO 206PB(A,4NG),206PB(3HE,3NG)
5 references found.
Clicking on a keynumber will list datasets that reference the given article.
Phys.Rev. C1, 290 (1970)
T.Yamazaki
Isomeric States of Po Isotopes in the Nanosecond Range Populated by Pb(α, xn) Reactions
NUCLEAR REACTIONS Pb(α, xnγ), E=24-50 MeV; measured αγ-delay. 205,207,209,211Po deduced levels. 204,206,208,210Po deduced isomeric states, T1/2, B(E2).
Nucl.Phys. A206, 452 (1973)
N.Brauer, A.Goldmann, J.Hadijuana, M.Von Hartrott, K.Nishiyama, D.Quitmann, D.Riegel, W.Zeitz, H.Schweickert
Core Polarization Effects in the πh9/2 Shell and g-Factors of the 8+ States in 204Po and 206Po
NUCLEAR REACTIONS 204Pb(α, 4nγ), E=50 MeV; 206Pb(α, 4nγ), E=50 MeV; measured αγ(θ, H, t). 204mPo, 206mPo deduced μ. Stroboscopic method, enriched targets.
doi: 10.1016/0375-9474(73)90077-8
Nucl.Phys. A211, 381 (1973)
S.Nagamiya, Y.Yamazaki, O.Hashimoto, T.Nomura, K.Nakai, T.Yamazaki
Magnetic Moments of the [πh29/2]8+ States in Po Isotopes and of the [(πh29/2)8+ X νp-11/2]17/2- State in 209Po
NUCLEAR REACTIONS 204,206Pb(3He, 3nγ), E=30 MeV; 204Pb(α, 2nγ), E=29 MeV; 208Pb(3He, 3nγ), E=28 MeV; 207Pb(α, 2nγ), E=28 MeV; 208Pb(α, 2nγ), E=25 MeV; measured γ(θ, H, t). 204,206,208,209,210Po levels deduced g, stroboscopic method.
doi: 10.1016/0375-9474(73)90727-6
Phys.Scr. 34, 720 (1986)
V.Rahkonen, B.Fant, C.J.Herrlander
On the Yrast Structure of 206Po
NUCLEAR REACTIONS 206Pb(α, 4n), E=51-55 MeV; 207Pb(α, 5n), E=59 MeV; 206Pb(3He, 3n), E=27 MeV; measured σ(E), γ(θ), Eγ, Iγ, I(ce), γγ-coin. 206Po deduced levels, J, π, T1/2, γ-multipolarity, ICC. Enriched target, Ge(Li) detectors, electron lens. Shell model.
Nucl.Phys. A515, 493 (1990)
A.M.Baxter, A.P.Byrne, G.D.Dracoulis, R.A.Bark, F.Riess, A.E.Stuchbery, M.C.Kruse, A.R.Poletti
Spectroscopy of High-Spin States of 206Po
NUCLEAR REACTIONS 198Pt(13C, 5n), E=70-80 MeV; measured γγ(t), (13C)γ(t), Eγ, Iγ, Iγ(E), Iγ(θ), I(ce). 206Po deduced levels, J, π, T1/2, B(λ), ICC. Enriched targets, Ge, Si(Li) detectors, pulsed beam. Empirical shell model calculations.
doi: 10.1016/0375-9474(90)90595-D