NSR Query Results
Output year order : Descending NSR database version of April 27, 2024. Search: Author = C.Riedel Found 28 matches. 2004RI05 Phys.Rev. C 69, 024616 (2004) C.M.Riedel, D.Dehnhard, M.Palarczyk, M.A.Espy, M.A.Franey, J.L.Langenbrunner, L.C.Bland, D.S.Carman, B.Brinkmoller, R.Madey, Y.Wang, J.W.Watson Measurement of 4He(p(pol), n) at 100 and 200 MeV: Analysis with recoil-corrected continuum shell model NUCLEAR REACTIONS 4He(polarized p, n), E=100, 200 MeV; measured σ(E, θ), Ay(θ); deduced core contributions and ground-state correlation effects. Recoil-corrected continuum shell model analysis.
doi: 10.1103/PhysRevC.69.024616
2003AH09 Phys.Rev. C 68, 064004 (2003) M.W.Ahmed, X.Cui, A.Empl, E.V.Hungerford, K.J.Lan, M.Youn, R.E.Chrien, R.Gill, P.Pile, A.Rusek, R.Sutter, J.Bjoraker, D.Dehnhard, J.M.O'Donnell, J.Gerald, H.Juengst, J.H.Liu, J.C.Peng, C.L.Morris, C.M.Riedel, H.A.Thiessen, D.Androic, I.Bertovic, M.Furic, T.Petkovic, M.Planinic, L.Tang, V.Zeps Experimental study of the 12C(K-stopped, π0)12ΛB reaction NUCLEAR REACTIONS 12C(K-, π0), E at rest; measured pion spectra; deduced hypernucleus production ground and excited state branching ratios. 12B deduced hyperon binding energy.
doi: 10.1103/PhysRevC.68.064004
2003HO12 Phys.Rev. C 68, 018202 (2003) G.J.Hofman, J.Breitschopf, K.Craig, H.Denz, E.F.Gibson, E.L.Mathie, R.Meier, M.M.Pavan, C.M.Riedel, R.Tacik, G.J.Wagner Analyzing powers for π-p elastic scattering at 279 MeV NUCLEAR REACTIONS 1H(π-, π-), E=279 MeV; measured Ay(θ). Polarized target, comparison with model predictions.
doi: 10.1103/PhysRevC.68.018202
1999GA28 Phys.Rev. C60, 024604 (1999) C.V.Gaulard, C.M.Riedel, J.R.Comfort, J.F.Amann, M.E.Beddo, R.L.Boudrie, G.R.Burleson, P.L.Cole, K.K.Craig, M.A.Espy, L.D.Isenhower, T.E.Kasprzyk, K.R.Knight, C.L.Morris, S.Penttila, D.Rigsby, M.E.Sadler, E.Six, H.M.Spinka, I.Supek, G.J.Wagner, Q.Zhao Analyzing Powers for the π- p(pol) → π0n Reaction Across the Δ(1232) Resonance NUCLEAR REACTIONS 1H(π-, π0), E=98.1, 138.8, 165.9, 214.4 MeV; measured Ay(θ). Polarized target, CsI neutral meson spectrometer.
doi: 10.1103/PhysRevC.60.024604
1999ZH22 Phys.Rev. C60, 024001 (1999) Q.Zhao, G.Burleson, S.Blanchard, T.Chang, W.Gibbs, J.Haas, B.Park, M.Whitton, M.Espy, D.Dehnhard, B.Larson, J.O'Donnell, M.Palarczyk, W.Cummings, P.Delheij, O.Hausser, E.Pasyuk, M.Gostkin, J.Amann, R.Boudrie, C.Riedel, C.Morris, S.Pentilla, D.Swenson, D.Tupa, J.Comfort, C.Gaulard, K.Maeda, G.Glass, I.Supek Measurements of Asymmetries of Pion Single Charge Exchange on Polarized 3He at 200 MeV NUCLEAR REACTIONS 3He(π-, π0), E=200 MeV; measured triton, neutral pion spectra, σ(θ), Ay(θ); deduced small contributions from SS' and SD overlaps. Polarized target. Comparison with theoretical predictions.
doi: 10.1103/PhysRevC.60.024001
1998KR04 Nucl.Phys. A631, 524c (1998) W.Kretschmer, A.Glombik, G.Suft, R.Weidmann, E.Boschitz, B.Brinkmoller, R.Meier, B.van den Brandt, P.Hautle, J.A.Konter, S.Mango, R.Tacik, P.Amaudruz, C.Riedel, W.Gruebler Polarization Transfer Observables in πd Elastic Scattering NUCLEAR REACTIONS 2H(π+, π+), E=134, 180 MeV; measured T20(θ). Polarized target.
doi: 10.1016/S0375-9474(98)00060-8
1998PA22 Phys.Rev. C58, 645 (1998) M.Palarczyk, C.M.Riedel, D.Dehnhard, M.A.Espy, M.A.Franey, J.L.Langenbrunner, L.C.Bland, D.S.Carman, B.Brinkmoller, R.Madey, Y.Wang, J.W.Watson, N.S.Chant Cross Sections and Analyzing Powers for the (p(pol), n) Reaction on 3He and 4He at 200 MeV NUCLEAR REACTIONS 3,4He(polarized p, n), E=200 MeV; measured neutron spectra, σ(Ex, θ), A(y)(θ). DWIA analysis.
doi: 10.1103/PhysRevC.58.645
1998SU12 Phys.Lett. 425B, 19 (1998) G.Suft, P.Amaudruz, E.Boschitz, B.van den Brandt, B.Brinkmoller, A.Glombik, J.Goetz, W.Gruebler, P.Hautle, J.A.Konter, W.Kretschmer, M.Lauterbach, S.Mango, R.Meier, C.Riedel, R.Tacik, R.Weidmann Polarization Transfer Observables in πd Elastic Scattering NUCLEAR REACTIONS 2H(π+, π+), E=134, 180 MeV; measured analyzing power, polarization transfer observables vs θ. Phase shift analysis, Fadeev calculations. Polarized target.
doi: 10.1016/S0370-2693(98)00173-7
1997ES05 Phys.Rev. C56, 2607 (1997) M.A.Espy, J.M.O'Donnell, B.Davis, D.Dehnhard, J.L.Langenbrunner, B.Larson, M.Palarczyk, C.M.Riedel, K.Wick, S.Blanchard, G.R.Burleson, W.R.Gibbs, B.Lail, B.Nelson, B.K.Park, Q.Zhao, W.J.Cummings, P.P.J.Delheij, B.K.Jennings, O.Hausser, R.Henderson, D.Thiessen, E.Brash, M.K.Jones, B.Brinkmoller, K.Maeda, F.Merrill, C.L.Morris, S.Penttila, D.Swenson, D.Tupa, C.Bennhold, S.S.Kamalov Asymmetries for Elastic Scattering of π- from Polarized 3He atΔ Resonance Energies NUCLEAR REACTIONS 3He(π+, π+), E=142, 180, 256 MeV; 3He(π-, π-), E=180 MeV; measured σ(θ); deduced asymmetries, Δ-n spin-spin interaction. Optically pumped spin polarized target, large acceptance spectrometer. Model comparisons.
doi: 10.1103/PhysRevC.56.2607
1981ST26 Phys.Rev.Lett. 47, 1807 (1981) H.Stocker, C.Riedel, Y.Yariv, L.P.Csernai, G.Buchwald, G.Graebner, J.A.Maruhn, W.Greiner, K.Frankel, M.Gyulassy, B.Schurmann, G.Westfall, J.D.Stevenson, J.R.Nix, D.Strottman Nuclear Fluid Dynamics Versus Intranuclear Cascade- Possible Evidence for Collective Flow in Central High-Energy Nuclear Collisions NUCLEAR REACTIONS 238U(20Ne, p), E=393 MeV/nucleon; calculated σ(θ, Ep); deduced collective flow effects. Different collision models.
doi: 10.1103/PhysRevLett.47.1807
1980RI01 Z.Phys. A294, 17 (1980) Statistical Fluctuations in Dissipative Heavy-Ion Collisions NUCLEAR REACTIONS 209Bi(136Xe, X), E=6.62 MeV/nucleon; 166Er(86Kr, X), E=8.12 MeV/nucleon; calculated σ(fragment θ, Z, E). Statistic fluctuations, Fokker-Planck equation.
doi: 10.1007/BF01473118
1979NO02 Z.Phys. A290, 335 (1979) Entrance-Channel Coherence in Dissipative Heavy-Ion Collisions and Compound-Nucleus Formation NUCLEAR REACTIONS Pb(Ar, X), E=400 MeV; calculated trajectories for different L in d-α plane, d is distance between fragments, α is mass asymmetry. Fokker-Planck equation, Moller-Nix adiabatic potential; deduced criteria for entrance-channel coherence, compound nucleus formation.
1979RI04 Z.Phys. A290, 47 (1979) C.Riedel, G.Wolschin, W.Norenberg Relaxation Times in Dissipative Heavy-Ion Collisions NUCLEAR REACTIONS 166Er(86Kr, X), E=5.99, 8.18 MeV/nucleon; 209Bi(136Xe, X), E=8.31, 6.62 MeV/nucleon; calculated relaxation times for dissipation of radial kinetic energy, relative angular momentum, development of deformations. Classical model for dissipative HI collisions; deduced empirical mass transport coefficients.
doi: 10.1007/BF01408479
1979RI10 Z.Phys. A290, 385 (1979) Theoretical Estimates for the Production of Transuranium Elements in Heavy-Ion Collisions NUCLEAR REACTIONS 238U(238U, X), E=75 MeV/amu; measured nothing; analyzed data; deduced production σ of superheavy elements, probability distributions of E, spins as function of fragment Z. Diffusion model for dissipative HI collisions.
doi: 10.1007/BF01408400
1972BR11 Nucl.Phys. A184, 23 (1972) R.A.Broglia, C.Riedel, T.Udagawa Sum Rules and Two-Particle Units in the Analysis of Two-Neutron Transfer Reactions NUCLEAR REACTIONS 16O, 40,48Ca, 118Sn, 204,206,207,208Pb(t, p), E=12, 20 MeV; calculated σ;σ(Ep).
doi: 10.1016/0375-9474(72)90442-3
1972IW01 Nucl.Phys. A183, 105 (1972) Reaction Spectroscopy with Even Tin Isotopes NUCLEAR REACTIONS 116,118Sn(t, p), E=12 MeV; 116Sn(p, p'), E=55 MeV; 116,118,120Sn(p, p'), E=16 MeV; calculated σ(θ). DWBA.
doi: 10.1016/0375-9474(72)90933-5
1970KU06 Phys.Lett. 32B, 29 (1970) K.Kubo, R.Broglia, C.Riedel, T.Udagawa Determination of the Y4 Deformation Parameter from the (p, t) Reaction NUCLEAR REACTIONS 158Gd, 164Dy, 172Yb, 176Hf, 184W(p, t), E=51.7 MeV; measured nothing; analyzed σ(θ) data. 156Gd, 162Dy, 170Yb, 174Hf, 182W deduced deformation parameter Y4.
doi: 10.1016/0370-2693(70)90327-8
1969BA19 Nucl.Phys. A126, 577 (1969) H.W.Barz, K.Hehl, C.Riedel, R.A.Broglia The Structure of 42Ca and 42Sc Investigated by Two-Nucleon Transfer Reactions NUCLEAR STRUCTURE 42Ca, 42Sc; calculated levels using coexistence model. NUCLEAR REACTIONS 40Ca(t, p), 40Ca(3He, p); calculated σ(θ), P(θ).
doi: 10.1016/0375-9474(69)90848-3
1969BR18 Nucl.Phys. A135, 561 (1969) R.A.Broglia, C.Riedel, T.Udagawa Nuclear Spectroscopy on Deformed Nuclei with Two-Neutron Transfer Reactions NUCLEAR REACTIONS 150,152,154Sm, 164Er, 168,170Yb, 174Hf, 238U(t, p), E not given; calculated σ(θ). Compared with data.
doi: 10.1016/0375-9474(69)90005-0
1969DA25 Nucl.Phys. A135, 310 (1969) J.Damgaard, R.Broglia, C.Riedel First-Forbidden β-Decays in the Lead Region RADIOACTIVITY 208,206,207Tl, 206Hg, 209,210,212,214Pb; analyzed β-decay.
doi: 10.1016/0375-9474(69)90165-1
1968BA51 Nucl.Phys. A122, 625(1968) H.W.Barz, K.Hehl, C.Riedel, R.A.Broglia An Average Set of Optical Triton Parameters Obtained from the Fit of (t, p) Angular Distributions NUCLEAR REACTIONS 48Ca, 63Cu, 118Sn, 154Sm, 208Pb, 238U(t, p), E = 12 MeV; calculated σ(θ); deduced optical model parameters.
doi: 10.1016/0375-9474(68)90581-2
1968BR01 Nucl.Phys. A106, 421 (1968) R.A.Broglia, P.Federman, O.Hansen, K.Hehl, C.Riedel The Spectrum of 50Ca and the 48Ca(t, p) Reaction
doi: 10.1016/0375-9474(67)90886-X
1968BR13 Nucl.Phys. A115, 273 (1968) R.A.Broglia, C.Riedel, B.Sorensen, T.Udagawa The Pairing Vibrational Model and the Analysis of the 116,118Sn(t, p) Reactions
doi: 10.1016/0375-9474(68)90004-3
1968RI05 Nucl.Phys. A113, 503 (1968) C.Riedel, R.A.Broglia, A.Miranda Two-Nucleon Transfer Reactions with Lead Isotopes
doi: 10.1016/0375-9474(68)90159-0
1967BR06 Nucl.Phys. A93, 241 (1967) Theoretical Study of the Reaction 204Pb(t, p)206Pb NUCLEAR STRUCTURE 206Pb; measured not abstracted; deduced nuclear properties.
doi: 10.1016/0375-9474(67)90267-9
1967BR28 Nucl.Phys. A92, 145 (1967) Pairing Vibration and Particle-Hole States Excited in the Reaction 206Pb(t, p)208Pb NUCLEAR REACTIONS 206Pb(t, p), E not given; measured nothing. 208Pb deduced pairing vibration, particle-hole states.
doi: 10.1016/0375-9474(67)90682-3
1967GE03 ZFK-PHA-25 (1967) H.U.Gersch, C.Riedel, W.Rudolph Calculations of the Level Scheme of 52V on the Shell Model NUCLEAR STRUCTURE 52V; measured not abstracted; deduced nuclear properties.
1967GE06 Nucl.Phys. A97, 65 (1967) H.U.Gersch, C.Riedel, W.Rudolph Shell-Model Calculations on 52V NUCLEAR STRUCTURE 52V; measured not abstracted; deduced nuclear properties.
doi: 10.1016/0375-9474(67)90770-1
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