NSR Query Results
Output year order : Descending NSR database version of April 27, 2024. Search: Author = P.Bogucki Found 10 matches. 1986GR10 Phys.Rev. C34, 322 (1986) P.Grabmayr, G.J.Wagner, K.T.Knopfle, H.Riedesel, P.Bogucki, J.D.Bronson, Y.W.Lui, U.Garg, D.H.Youngblood Direct Contributions to the Decay of Isoscalar Giant Resonances in 58Ni NUCLEAR REACTIONS 58Ni(α, 2α), (α, pα), E=129 MeV; measured σ(θ1, θ2, Eα), αα(θ), αp(θ); deduced reaction mechanism. 58Ni deduced isoscalar giant resonance decay mechanism.
doi: 10.1103/PhysRevC.34.322
1984GA02 Phys.Rev. C29, 93 (1984) U.Garg, P.Bogucki, J.D.Bronson, Y.-W.Lui, D.H.Youngblood Giant Monopole Resonance in Transitional and Deformed Nuclei NUCLEAR REACTIONS 144,148Sm, 142,146,150Nd(α, α'), E=129 MeV; measured σ(Eα'), σ(θ). 142,146Nd deduced giant resonances, Γ, L. 148Sm deduced giant resonances, L, multipole mixing, Γ. 150Nd deduced giant resonance, monopole splitting, Γ, L.
doi: 10.1103/PhysRevC.29.93
1984LU06 Phys.Rev. C30, 51 (1984) Y.-W.Lui, P.Bogucki, J.D.Bronson, D.H.Youngblood, U.Garg Giant Resonances in 112Sn NUCLEAR REACTIONS 112Sn(α, α'), E=129.1 MeV; measured σ(θ); deduced nuclear incompressibility parameters. 112Sn deduced isoscalar GQR, giant monopole resonances.
doi: 10.1103/PhysRevC.30.51
1983SC27 Phys.Lett. 127B, 327 (1983) R.P.Schmitt, G.Mouchaty, D.R.Haenni, P.Bogucki Possible Evidence for the Statistical Excitation of Collective Modes in Heavy Ion Induced Fission NUCLEAR REACTIONS 154Sm(40Ar, F), E=240 MeV; 182W(12C, F), E=140 MeV; measured γ-multiplicity vs fission fragment mass; deduced average total fragment spin vs mass, possible statistical collective mode excitation. Two-sphere model, thermal excitation mechanism.
doi: 10.1016/0370-2693(83)91010-9
1982GA16 Phys.Rev. C25, 3204 (1982) U.Garg, P.Bogucki, J.D.Bronson, Y.-W.Lui, C.M.Rozsa, D.H.Youngblood Comment on the Evidence for a Monopole Resonance at Approximately 20 MeV in 58Ni NUCLEAR REACTIONS 58Ni(α, α'), E=129 MeV; measured σ(θ), σ(Eα'). 58Ni deduced giant resonances, L, possible monopole. DWBA analysis.
doi: 10.1103/PhysRevC.25.3204
1981LU05 Phys.Rev. C24, 884 (1981) Y.-W.Lui, J.D.Bronson, C.M.Rozsa, D.H.Youngblood, P.Bogucki, U.Garg Giant Resonances in 40Ca NUCLEAR REACTIONS 40Ca(α, α'), E=98.5, 116.8, 129.4 MeV; measured σ(Eα, θ). 40Ca deduced giant resonances, L, EWSR, Γ, J, π. DWBA analysis.
doi: 10.1103/PhysRevC.24.884
1981YO04 Phys.Rev. C23, 1997 (1981) D.H.Youngblood, P.Bogucki, J.D.Bronson, U.Garg, Y.-W.Lui, C.M.Rozsa Systematics of the Giant Monopole Resonance from Inelastic Alpha Scattering NUCLEAR REACTIONS 12C, 27Al, 40Ca, 48Ti, 58Ni, 64,66Zn, 90Zr, 116,118,120,124Sn, 144,154Sm, 208Pb(α, α'), E=99, 117, 129 MeV; measured σ(θ, Eα); deduced nuclear incompressibility vs mass. 27Al, 40Ca, 48Ti, 58Ni deduced GQR, Γ. 64,66Zn, 90Zr, 116,118,120,124Sn, 144,154Sm, 208Pb deduced GQR, giant monopole resonances, Γ, EWSR.
doi: 10.1103/PhysRevC.23.1997
1980GA15 Phys.Lett. 93B, 39 (1980) U.Garg, P.Bogucki, J.D.Bronson, Y.-W.Lui, K.Nagatani, E.Takada, N.Takahashi, T.Tamaya, D.H.Youngblood Excitation of Giant Resonances in 208Pb Using Inelastic 14N Scattering NUCLEAR REACTIONS 208Pb(14N, 14N'), E=266 MeV; measured σ(θ, E(14N')). 208Pb deduced GQR, Γ.
doi: 10.1016/0370-2693(80)90090-8
1980GA21 Phys.Rev.Lett. 45, 1670 (1980) U.Garg, P.Bogucki, J.D.Bronson, Y.-W.Lui, C.M.Rozsa, D.H.Youngblood Splitting of the Giant Monopole Resonance with Deformation in Sm Nuclei NUCLEAR REACTIONS 144,154Sm(α, α'), E=96, 129 MeV; measured σ(θ, Eα). 144,154Sm deduced GQR, giant monopole resonances, Γ, EWSR strengths. 154Sm deduced giant monopole resonance fragmentation. Schematic model.
doi: 10.1103/PhysRevLett.45.1670
1980LU06 Phys.Lett. 93B, 31 (1980) Y.-W.Lui, P.Bogucki, J.D.Bronson, U.Garg, C.M.Rozsa, D.H.Youngblood Observation of the Giant Monopole Resonance in 64,66Zn NUCLEAR REACTIONS 64,66Zn(α, α), E=129 MeV; measured σ(θ). 64,66Zn, 90Zr, 115In, 116,118,120,124Sn, 144,148Sm, 197Au, 208Pb deduced surface, symmetry term contributions to nuclear compressibility. 64,66Zn deduced T=0 giant monopole resonance, energy-weighted sum rule.
doi: 10.1016/0370-2693(80)90088-X
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