NSR Query Results
Output year order : Descending NSR database version of April 27, 2024. Search: Author = X.G.Zhou Found 8 matches. 1997MU19 Phys.Rev. C56, 1302 (1997) A.M.Mukhamedzhanov, H.L.Clark, C.A.Gagliardi, Y.-W.Lui, L.Trache, R.E.Tribble, H.M.Xu, X.G.Zhou, V.Burjan, J.Cejpek, V.Kroha, F.Carstoiu Asymptotic Normalization Coefficients for 10B → 9Be + p NUCLEAR REACTIONS 9Be(10B, 9Be), (10B, 10B), E=100 MeV; measured σ(E, θ); deduced optical model parameters, 9Be(10B, 9Be) reaction σ, asymptotic normalization coefficients for 10B → 9Be+p virtual decays. DWBA approach.
doi: 10.1103/PhysRevC.56.1302
1996SE01 Phys.Rev. C53, 96 (1996) D.R.Semon, M.C.Allen, H.Dejbakhsh, C.A.Gagliardi, S.E.Hale, J.Jiang, L.Trache, R.E.Tribble, S.J.Yennello, H.M.Xu, X.G.Zhou, B.A.Brown l-Forbidden Gamow-Teller β Decay of 57Cu RADIOACTIVITY 57Cu(β+) [from 1H(58Ni, 57Cu), E=29-31 MeV/nucleon]; measured βγ-coin, Eγ, Iγ, T1/2. 57Ni levels deduced l-forbidden, superallowed Gamow-Teller transition features, absolute branching ratio. Shell model comparison. NUCLEAR STRUCTURE 29P, 29Si, 57Cu, 57Ni; calculated B(λ), B(GT). Shell model.
doi: 10.1103/PhysRevC.53.96
1996TR09 Phys.Rev. C54, 2361 (1996) L.Trache, A.Kolomiets, S.Shlomo, K.Heyde, H.Dejbakhsh, C.A.Gagliardi, R.E.Tribble, X.G.Zhou, V.E.Iacob, A.M.Oros ' Bare ' Single-Particle Energies in 56Ni NUCLEAR STRUCTURE 57Ni, 57Cu; calculated levels. Extended unified model, empirical bare single particle energies in 56Ni.
doi: 10.1103/PhysRevC.54.2361
1996ZH02 Phys.Rev. C53, 982 (1996) X.G.Zhou, H.Dejbakhsh, C.A.Gagliardi, J.Jiang, L.Trache, R.E.Tribble Low-Lying Levels in 57Cu and the rp Process NUCLEAR REACTIONS 1H(58Ni, 2n), E=31 MeV/nucleon; measured Eγ, Iγ; deduced astrophysical rate for 56Ni(p, γ)57Cu via rp process. 57Cu deduced levels, J, π.
doi: 10.1103/PhysRevC.53.982
1995GA20 Nucl.Phys. A588, 327c (1995) C.A.Gagliardi, R.E.Tribble, J.Jiang, A.M.Mukhamedzhanov, L.Trache, H.M.Xu, S.J.Yennello, X.G.Zhou Determing S17(0) from the 10B(7Be, 8B)9Be Reaction NUCLEAR REACTIONS 3He, 10B(7Be, 8B), E=100 MeV; calculated σ(θ). DWBA analysis, preliminary investigations for 10B(7Be, 8B) astrophysical S-factor.
doi: 10.1016/0375-9474(95)00157-V
1994SE12 Z.Phys. A349, 25 (1994) H.L.Seifert, J.M.Wouters, D.J.Vieira, H.Wollnik, X.G.Zhou, X.L.Tu, Z.Y.Zhou, G.W.Butler Mass Measurement of Neutron-Rich Isotopes from 51Ca to 72Ni NUCLEAR REACTIONS Th(p, F), E=800 MeV; measured fission fragment tof spectra, other features. 51Ca, 52,53,54Sc, 54,55,56Ti, 56,57,58,59,60V, 57,58,59,60,61,62Cr, 60,61,62,63,64,65Mn, 63,64,65,66,67Fe, 66,67,68,69Co, 67,68,69,70,71,72Ni deduced mass excess, two-neutron separation energies.
doi: 10.1007/BF01296329
1991ZH24 Phys.Lett. 260B, 285 (1991) X.G.Zhou, X.L.Tu, J.M.Wouters, D.J.Vieira, K.E.G.Lobner, H.L.Seifert, Z.Y.Zhou, G.W.Butler Direct Mass Measurements of the Neutron-Rich Isotopes of Fluorine Through Chlorine NUCLEAR REACTIONS Th(p, X), E=800 MeV; measured fragment mass, charge state ratio, velocity histograms. 24,25,26,27F, 27,28,29Ne, 30,31,32Na, 30,31,32,33,34Mg, 33,34,35,36Al, 36,37,38Si, 38,39,40,41P, 40,41,42,43S, 41,42,43,44Cl deduced mass excess.
doi: 10.1016/0370-2693(91)91613-Z
1990TU01 Z.Phys. A337, 361 (1990) X.L.Tu, X.G.Zhou, D.J.Vieira, J.M.Wouters, Z.Y.Zhou, H.L.Seifert, V.G.Lind Direct Mass Measurements of the Neutron-Rich Isotopes of Chlorine through Iron NUCLEAR REACTIONS Th(p, X), (p, F), E not given; measured fragment charge, mass spectra; deduced neutron, proton pairing energy vs neutron excess, binding energy enhancement around 53Sc. 41,42,43,44,45Cl, 47Ar, 50K, 51,52Ca, 52,53,54,55Sc, 54,55,56,57Ti, 56,57,58,59,60V, 57,58,59,60,61,62Cr, 60,61,62,63,64Mn, 63,64,65,66Fe; deduced mass excess. Tof isochronous spectrometer. Model comparison. ATOMIC MASSES Th(p, X), (p, F), E not given; measured fragment charge, mass spectra; deduced neutron, proton pairing energy vs neutron excess, binding energy enhancement around 53Sc. 41,42,43,44,45Cl, 47Ar, 50K, 51,52Ca, 52,53,54,55Sc, 54,55,56,57Ti, 56,57,58,59,60V, 57,58,59,60,61,62Cr, 60,61,62,63,64Mn, 63,64,65,66Fe; deduced mass excess. Tof isochronous spectrometer. Model comparison.
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