NSR Query Results
Output year order : Descending NSR database version of April 27, 2024. Search: Author = E.Vogt Found 40 matches. 2011BA54 Pure Appl.Chem. 83, 1485 (2011) R.C.Barber, P.J.Karol, H.Nakahara, E.Vardaci, E.W.Vogt Discovery of the elements with atomic numbers greater than or equal to 113 (IUPAC Technical Report) COMPILATION 291Lv, 287Fl, 283Cn(α); compiled, experimental nuclear reaction and decay data.
doi: 10.1351/PAC-REP-10-05-01
2009BA62 Pure Appl.Chem. 81, 1331 (2009) R.C.Barber, H.W.Gaggeler, P.J.Karol, H.Nakahara, E.Vardaci, E.Vogt Discovery of the element with atomic number 112 (IUPAC Technical Report) COMPILATION 277Cn(α); compiled, experimental nuclear reaction and decay data.
doi: 10.1351/PAC-REP-08-03-05
2003KA71 Pure Appl.Chem. 75, 1601 (2003) P.J.Karol, H.Nakahara, B.W.Petley, E.Vogt On the claims for discovery of elements 110, 111, 112, 114, 116, and 118 (IUPAC Technical Report) NUCLEAR STRUCTURE Z=110-112; Z=114; Z=116; Z=118; compiled, analyzed priority claims for element discovery.
doi: 10.1351/pac200375101601
2001KA70 Pure Appl.Chem. 73, 959 (2001) P.J.Karol, H.Nakahara, B.W.Petley, E.Vogt On the discovery of the elements 110-112 (IUPAC Technical Report) NUCLEAR STRUCTURE Z=110-112; compiled, analyzed priority claims for element discovery.
doi: 10.1351/pac200173060959
1997IB01 Nucl.Phys. A619, 213 (1997) R.W.Ibbotson, C.A.White, T.Czosnyka, P.A.Butler, N.Clarkson, D.Cline, R.A.Cunningham, M.Devlin, K.G.Helmer, T.H.Hoare, J.R.Hughes, G.D.Jones, A.E.Kavka, B.Kotlinski, R.J.Poynter, P.H.Regan, E.G.Vogt, R.Wadsworth, D.L.Watson, C.Y.Wu Quadrupole and Octupole Collectivity in 148Nd NUCLEAR REACTIONS 148Nd(58Ni, 58Ni), E=200 MeV; measured (projectile)(recoil)-coin, (projectile)γ-coin following Coulomb excitation. 148Nd(92Mo, 92Mo'), E=330 MeV; measured (projectile)γ-coin following Coulomb excitation. 208Pb(148Nd, 148Nd'), E=700 MeV; measured Eγ, Iγ, γ multiplicity following Coulomb excitation. 148Nd levels deduced B(λ), shape, collectivity related features.
doi: 10.1016/S0375-9474(97)00145-0
1996VO18 Phys.Lett. 389B, 637 (1996) Improving R-Matrix Estimates of Astrophysical S-Factors NUCLEAR REACTIONS, ICPND 12C(α, α), E=1.6-2.5 MeV; calculated resonant σ(E); deduced R-matrix radii determination uniqueness by nuclear mean field, astrophysical S-factor related features.
doi: 10.1016/S0370-2693(96)01340-8
1995KA29 Nucl.Phys. A593, 177 (1995) A.E.Kavka, C.Fahlander, A.Backlin, D.Cline, T.Czosnyka, R.M.Diamond, D.Disdier, W.J.Kernan, L.Kraus, I.Linck, N.Schulz, J.Srebrny, F.S.Stephens, L.E.Svensson, B.Varnestig, E.G.Vogt, C.Y.Wu Coulomb Excitation of 76,80,82Se NUCLEAR REACTIONS 82Se(16O, 16O'), E=34 MeV; 48Ti(76Se, 76Se'), E=186 MeV; 48Ti(80Se, 80Se'), (82Se, 82Se'), E=195 MeV; 76Se(208Pb, 208Pb'), E=934 MeV; 208Pb(80Se, 80Se'), (82Se, 82Se'), E=312 MeV; measured (projectile)γ(θ), (projectile)(recoil)γ(θ) following Coulomb excitation. 76,80,82Se levels deduced B(E2), quadrupole moments. Enriched targets, Ge detectors, parallel-plate avalanche gas counters.
doi: 10.1016/0375-9474(95)00327-W
1994VO10 Nucl.Phys. A574, 297c (1994) Mesonic Probes
doi: 10.1016/0375-9474(94)90051-5
1993HE14 Phys.Rev. C48, 1879 (1993) K.G.Helmer, C.Y.Wu, D.Cline, A.E.Kavka, W.J.Kernan, E.G.Vogt, M.W.Guidry, X.L.Han, R.W.Kincaid, X.T.Liu, H.Schecter, J.O.Rasmussen, A.Shihab-Eldin, M.A.Stoyer, M.L.Halbert Search for Diabolical Pair Transfer in Two-Neutron Transfer Reactions NUCLEAR REACTIONS 206Pb(156Gd, 154Gd), (156Gd, 158Gd), E=888 MeV; measured Eγ, Iγ, γ-ray multiplicity; deduced diabolical pair transfer related features.
doi: 10.1103/PhysRevC.48.1879
1993IB01 Phys.Rev.Lett. 71, 1990 (1993) R.Ibbotson, C.A.White, T.Czosnyka, P.A.Butler, N.Clarkson, D.Cline, R.A.Cunningham, M.Devlin, K.G.Helmer, T.H.Hoare, J.R.Hughes, G.D.Jones, A.E.Kavka, B.Kotlinski, R.J.Poynter, P.Regan, E.G.Vogt, R.Wadsworth, D.L.Watson, C.Y.Wu Octupole Collectivity in the Ground Band of 148Nd NUCLEAR REACTIONS 148Nd(58Ni, 58Ni'), E=200 MeV; 148Nd(92Mo, 92Mo'), E=330 MeV; measured (particle)γ-, γγ(particle)-coin following Coulomb excitation. 208Pb(148Nd, 148Nd'), E=700 MeV; measured (particle)γ-coin, γ yields, γ-multiplicity following Coulomb excitation. 148Nd deduced levels, γ-multipolarity, multipole matrix elements, band collectivity features.
doi: 10.1103/PhysRevLett.71.1990
1992TH04 Z.Phys. A342, 35 (1992) I.Thorslund, C.Fahlander, A.Backlin, B.Kotlinski, D.Cline, A.T.Renalds, E.G.Vogt Lifetime Measurements in 166Er NUCLEAR REACTIONS 166Er(58Ni, 58Ni'), E=227 MeV; measured (particle)γ-coin, recoil distance. 166Er levels deduced T1/2, B(λ), γ-branching.
doi: 10.1007/BF01294486
1991DE09 Nucl.Phys. A528, 242 (1991) J.de Boer, J.Fernandez Niello, E.Hauber, E.G.Vogt, C.H.Dasso, M.Lozano, G.Pollarolo Dynamical Effects in Heavy-Ion Interactions at Bombarding Energies Near the Coulomb Barrier. A Study for the 16O + 120Sn System NUCLEAR REACTIONS 120Sn(16O, 16O), (16O, 16O'), E=46, 50, 54 MeV; measured σ(θ); deduced model parameters, dynamical effects role. Optical model.
doi: 10.1016/0375-9474(91)90427-8
1991HE19 Phys.Rev. C44, 2598 (1991) K.G.Helmer, C.Y.Wu, D.Cline, M.A.Deleplanque, R.M.Diamond, A.E.Kavka, W.J.Kernan, X.T.Liu, A.O.Macchiavelli, R.J.McDonald, J.O.Rasmussen, F.S.Stephens, M.A.Stoyer, E.G.Vogt Population of High-Spin States in 234U by Heavy-Ion-Induced Transfer Reactions NUCLEAR REACTIONS 235U(58Ni, 59Ni), E=325 MeV; 235U(206Pb, 207Pb), E=1394 MeV; measured Eγ, Iγ, (particle)γγ-coin; deduced one-nucleon transfer σ. Q(gg) systematics model comparison.
doi: 10.1103/PhysRevC.44.2598
1991IB01 Nucl.Phys. A530, 199 (1991) R.Ibbotson, B.Kotlinski, D.Cline, K.G.Helmer, A.E.Kavka, A.Renalds, E.G.Vogt, P.A.Butler, C.A.White, R.Wadsworth, D.L.Watson Lifetimes of Low-Lying States in 148Nd NUCLEAR REACTIONS 148Nd(58Ni, 58Ni'), E=220 MeV; measured Eγ, Iγ, recoil distance decay curves following Coulomb excitation, pγ-coin. 148Nd levels deduced T1/2, B(λ), intrinsic deformations, quadrupole moments.
doi: 10.1016/0375-9474(91)90763-V
1991KE04 Nucl.Phys. A524, 344 (1991) W.J.Kernan, C.Y.Wu, X.T.Liu, X.L.Han, D.Cline, T.Czosnyka, M.W.Guidry, M.L.Halbert, S.Juutinen, A.E.Kavka, R.W.Kincaid, J.O.Rasmussen, S.P.Sorensen, M.A.Stoyer, E.G.Vogt Heavy-Ion Induced Transfer Reactions with Spherical and Deformed Nuclei NUCLEAR REACTIONS 117,118Sn, 161,162,163,164Dy(58Ni, X), (112Sn, X), (116Sn, X), E=285-637 MeV; measured Eγ, Iγ, γ(fragment)-coin; deduced quasielastic channels σ. DWBA, semi-classical calculations, pairing degrees of freedom. 4π soectrometer.
doi: 10.1016/0375-9474(91)90030-A
1991LI01 Phys.Rev. C43, R1 (1991) X.T.Liu, D.Cline, T.Czosnyka, M.W.Guidry, X.L.Han, A.E.Kavka, W.J.Kernan, R.W.Kincaid, S.P.Sorensen, E.G.Vogt, C.Y.Wu Two-Neutron Pairing Enhancement Factors NUCLEAR REACTIONS 162Dy(116Sn, 118Sn), 161Dy(116Sn, 117Sn), E=637 MeV; 162Dy(58Ni, 60Ni), 161Dy(58Ni, 59Ni), E=345 MeV; measured γ-spectra; deduced two-neutron pairing enhancement factors. 160Dy levels deduced one-, two-neutron pickup probabilities.
doi: 10.1103/PhysRevC.43.R1
1991WU05 Nucl.Phys. A533, 359 (1991) C.Y.Wu, D.Cline, E.G.Vogt, W.J.Kernan, T.Czosnyka, K.G.Helmer, R.W.Ibbotson, A.E.Kavka, B.Kotlinski, R.M.Diamond Electromagnetic Properties of Tungsten Nuclei NUCLEAR REACTIONS 182,184W(58Ni, 58Ni'), E=235 MeV; 182,184W(136Xe, 136Xe'), E=561 MeV; measured Eγ, Iγ following Coulomb excitation. 182,184W(58Ni, 58Ni'), E=245 MeV; measured Eγ, Iγ, recoil distance method. 182,184W deduced levels, static, transition E2 matrix elements, T1/2.
doi: 10.1016/0375-9474(91)90495-R
1990KO30 Nucl.Phys. A517, 365 (1990) B.Kotlinski, D.Cline, A.Backlin, K.G.Helmer, A.E.Kavka, W.J.Kernan, E.G.Vogt, C.Y.Wu, R.M.Diamond, A.O.Macchiavelli, M.A.Deleplanque Coulomb Excitation of 168Er NUCLEAR REACTIONS 168Er(208Pb, 208Pb'), E=950 MeV; 168Er(58Ni, 58Ni'), E=220 MeV; 168Er(40Ca, 40Ca'), E=150 MeV; measured (particle)γ(θ), Eγ, Iγ, recoil distance following Coulomb excitation. 168Er levels deduced T1/2, δ, E2 matrix elements.
doi: 10.1016/0375-9474(90)90040-S
1989WU02 Phys.Rev. C39, 298 (1989) C.Y.Wu, X.T.Liu, W.J.Kernan, D.Cline, T.Czosnyka, M.W.Guidry, A.E.Kavka, R.W.Kincaid, B.Kotlinski, S.P.Sorensen, E.Vogt Evidence for Oscillating Two-Neutron Transfer Probabilities at Large Radial Separation in Heavy-Ion Reactions NUCLEAR REACTIONS 162Dy(58Ni, 60Ni), E=285, 345 MeV; 162Dy(116Sn, 118Sn), E=637 MeV; measured σ(E(γ), θ), total Eγ, γ-multiplicity; deduced two-nucleon transfer probability features.
doi: 10.1103/PhysRevC.39.298
1989WU04 Phys.Rev. C40, R3 (1989); Erratum Phys.Rev. C40, 2431 (1989) C.Y.Wu, D.Cline, E.G.Vogt, W.J.Kernan, T.Czosnyka, A.Kavka, R.M.Diamond Coupling between the β and γ Vibration in Tungsten Nuclei NUCLEAR REACTIONS 182,184W(58Ni, 58Ni'), E=233 MeV; 182,184W(136Xe, 136Xe'), E=561 MeV; measured Eγ, Iγ following Coulomb excitation. 182,184W deduced levels, static E2 transition matrix elements.
doi: 10.1103/PhysRevC.40.R3
1987BU10 Phys.Lett. 191B, 333 (1987) P.A.Butler, C.Baktash, C.R.Bingham, M.Carpenter, D.Cline, B.Cox, M.W.Guidry, S.Juutinen, A.E.Kavka, W.J.Kernan, R.W.Kincaid, A.Larabee, I.Y.Lee, X.T.Liu, S.P.Sorensen, E.Vogt, C.Y.Wu Observation of Intrinsic Excitation in 160Dy following Heavy-Ion Transfer Reactions NUCLEAR REACTIONS 161Dy(58Ni, 59Ni), E=270 MeV; measured Eγ, Iγ, γγ-coin. 160Dy deduced levels, J, π, decay, band characteristics. Ge, NaI detectors.
doi: 10.1016/0370-2693(87)90618-6
1987JU03 Phys.Lett. 192B, 307 (1987) S.Juutinen, X.T.Liu, S.Sorensen, B.Cox, R.W.Kincaid, C.R.Bingham, M.W.Guidry, W.J.Kernan, C.Y.Wu, E.Vogt, T.Czosnyka, D.Cline, M.L.Halbert, I.Y.Lee, C.Baktash Anomalous Two-Neutron Transfer Cross Sections at Large Separation in Heavy Ion Reactions NUCLEAR REACTIONS 161,163Dy(116Sn, 117Sn), 162,164Dy(116Sn, 118Sn), E=637 MeV; 161Dy(58Ni, 59Ni), 162Dy(58Ni, 60Ni), E=345 MeV; measured two-particle transfer probabilities vs closest approach distance, Eγ vs γ-multiplicity; deduced slope parameters. Position sensitive detectors, spin spectrometer.
doi: 10.1016/0370-2693(87)90111-0
1987WU03 Phys.Lett. 188B, 25 (1987) C.Y.Wu, X.T.Liu, S.P.Sorensen, R.W.Kincaid, M.W.Guidry, D.Cline, W.J.Kernan, E.Vogt, T.Czosnyka, A.E.Kavka, M.A.Stoyer, J.O.Rasmussen, M.L.Halbert Population of High-Spin States in the Actinide Region by Heavy-Ion Transfer Reactions NUCLEAR REACTIONS 235U(58Ni, 59Ni), E=325 MeV; measured Eγ, Iγ, γ-multiplicity; deduced reaction mechanism. 234U deduced levels, J, π. Enriched Target.
doi: 10.1016/0370-2693(87)90699-X
1973WA13 Nucl.Phys. A204, 433 (1973) Effects of Exchange, Final-State Interactions, and Distorted Waves in the Reactions 2H(3He, 3H p)p and 2H(3He, 3He p)n NUCLEAR REACTIONS 2H(3He, tp), (3He, 3Hep); analyzed σ(Et), σ(E(3He)).
doi: 10.1016/0375-9474(73)90386-2
1972VO09 Phys.Lett. 40B, 345 (1972) Rotational Bands of 20Ne NUCLEAR STRUCTURE 20Ne; analyzed rotational band structure, level-width.
doi: 10.1016/0370-2693(72)90815-5
1969RU03 Nucl.Phys. A127, 323 (1969) Formation and Decay of the Compound Nucleus 68Se (II). Calculation; Competition Between Gamma-Ray and Particle Emission NUCLEAR REACTIONS 64Zn(α, X), 56Fe(12C, X), 52Cr(16O, X); calculated σ(E(68Ge)), γ-, particle-emission probabilities.
doi: 10.1016/0375-9474(69)90574-0
1969TI05 Can.J.Phys. 47, 2763 (1969) Comparison of Reaction Theories for Multilevel Interfefence - the 14C + p Reactions NUCLEAR REACTIONS 14C(p, γ), (p, n), E = 0.7-1.5 MeV; calculated σ(E). R-matrix, S-matrix theories.
doi: 10.1139/p69-338
1968RE10 Can.J.Phys. 46, 2241 (1968) M.A.Reimann, P.W.Martin, E.W.Vogt Effect of the Lifetime of the Intermediate 5Li State in the 6Li(3He, αp)4He Reaction NUCLEAR STRUCTURE 6Li; measured not abstracted; deduced nuclear properties.
doi: 10.1139/p68-575
1967RE03 Phys.Rev.Letters 18, 246 (1967) M.A.Reimann, P.W.Martin, E.W.Vogt Structure-Dependent Asymmetry in Sequential Breakup from the Reaction Li6(He3, Pα)He4 NUCLEAR STRUCTURE 6Li; measured not abstracted; deduced nuclear properties.
doi: 10.1103/PhysRevLett.18.246
1964AL17 Phys. Rev. 136, B84 (1964) E.Almqvist, J.A.Kuehner, D.McPherson, E.W.Vogt Effects of Sample Size and Statistical Weights on Fluctuations in the C12(C12, α)Ne20 Reactions NUCLEAR STRUCTURE 12C; measured not abstracted; deduced nuclear properties.
doi: 10.1103/PhysRev.136.B84
1964VO03 Phys.Rev. 136, B99 (1964) E.W.Vogt, D.McPherson, J.A.Kuehner, E.Almqvist Average Cross Sections for the C12(C12, α)Ne20 Reactions NUCLEAR STRUCTURE 12C; measured not abstracted; deduced nuclear properties.
doi: 10.1103/PhysRev.136.B99
1963AL23 Conf. Compd.Nucl. States, Gatlinburg, Tenn., p.18, Abstr. B6 (1963) E.Almqvist, J.A.Kuehner, D.McPherson, E.W.Vogt Compound Nucleus Contributions to the C12(C12, α)Ne20 Reactions NUCLEAR STRUCTURE 12C; measured not abstracted; deduced nuclear properties.
1963CR13 Conf.Compd.Nucl.States, Gatlinburg, Tenn. p. 19, B7 (1963) W.G.Cross, D.McPherson, E.W.Vogt Determination of d-Wave Neutron Strength Functions from Inelastic Neutron Scattering to Isomeric States NUCLEAR STRUCTURE 115In, 89Y; measured not abstracted; deduced nuclear properties.
1963VO01 Phys.Letters 7, 61 (1963) Determination of d-Wave Neutron Strength Functions from Inelastic Neutron Scattering to Isomeric States NUCLEAR STRUCTURE 115In; measured not abstracted; deduced nuclear properties.
doi: 10.1016/0031-9163(63)90443-8
1962VO03 Phys.Letters 1, 84 (1962) The Thickness of the Nuclear Surface
doi: 10.1016/0031-9163(62)90276-7
1962VO04 Revs.Modern Phys. 34, 723 (1962) Theory of Low Energy Nuclear Reactions
doi: 10.1103/RevModPhys.34.723
1961FR05 Phys.Rev. 122, 1248 (1961) Reduced Widths and Isotopic Spin Impurities of 1/2+ States of N15 NUCLEAR STRUCTURE 15N; measured not abstracted; deduced nuclear properties.
doi: 10.1103/PhysRev.122.1248
1960FR09 Proc.Intern.Conf.Nuclear Structure, Kingston, Canada, D.A.Bromley, E.W.Vogt, Editors, University of Toronto Press, p.480 (1960) Reduced Widths and Isotopic Spin Impurity of the 1/2 + States of N15 NUCLEAR STRUCTURE 15N; measured not abstracted; deduced nuclear properties.
1960VO02 Phys.Rev.Letters 4, 518 (1960) ' Molecular ' States Formed by Two Carbon Nuclei NUCLEAR STRUCTURE 24Mg; measured not abstracted; deduced nuclear properties.
doi: 10.1103/PhysRevLett.4.518
1959VO26 Bull.Am.Phys.Soc. 4, No.4, 271, SA6 (1959) Low-Energy Neutron Cross Sections of Fissionable Nuclei
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