NSR Query Results
Output year order : Descending NSR database version of April 26, 2024. Search: Author = L.Rees Found 11 matches. 1995TU03 Nucl.Instrum.Methods Phys.Res. A103, 28 (1995) D.C.Turner, N.F.Mangelson, L.B.Rees Determination of Aluminum Oxide Stopping Cross Sections for Protons and Deuterons by Backscattering from Thin Targets ATOMIC PHYSICS 27Al(p, X), E=0.9-2.5 MeV; 27Al(d, X), E=0.9-2.39 MeV; measured stopping σ.
1991CH31 Phys.Rev. C44, 2041 (1991) X.Y.Chen, J.R.Shepard, M.R.Braunstein, T.A.Carey, K.W.Jones, J.B.McClelland, L.Rees, T.N.Taddeucci, N.Tanaka, A.D.Bacher Complete Spin-Transfer Measurements for Inelastic Polarized Proton Scattering from 12C NUCLEAR REACTIONS 12C(polarized p, p'), E=500 MeV; measured σ(θ), spin-transfer observables vs θ, analyzing power. 12C levels deduced spin responses.
doi: 10.1103/PhysRevC.44.2041
1987HU02 Nucl.Phys. A462, 605 (1987) J.R.Hurd, J.S.Boswell, R.C.Minehart, L.B.Rees, Y.Tzeng, H.J.Ziock, K.O.H.Ziock A Study of the Reaction (π+, π+p) in 12C and 6Li NUCLEAR REACTIONS 12C, 6Li(π+, π+p), E=130, 150 MeV; measured σ(Eπ, Ep, θπ). Enriched 6Li target. Plane wave, DWIA analyses.
doi: 10.1016/0375-9474(87)90568-9
1987NA06 Phys.Lett. 188B, 177 (1987) S.K.Nanda, M.Gazzaly, C.Glashausser, J.McGill, K.W.Jones, T.A.Carey, L.B.Rees, H.Ohnuma Spin Transfer Measurements in the 51V(p(pol), p(pol)')51V* Reaction NUCLEAR REACTIONS 51V(polarized p, p'), E=319 MeV; measured σ(θ), analyzing power, spin-flip σ(E(p'), θ). 51V deduced M1 resonance.
doi: 10.1016/0370-2693(87)90002-5
1986RE08 Phys.Rev. C34, 627 (1986) L.B.Rees, J.M.Moss, T.A.Carey, K.W.Jones, J.B.McClelland, N.Tanaka, A.D.Bacher, H.Esbensen Continuum Polarization Transfer in 500 MeV Proton Scattering and Pionic Collectivity in Nuclei NUCLEAR REACTIONS 2H, Ca, Pb(polarized p, pX), E=500 MeV; measured polarization transfer observables, inclusive reaction; deduced longitudinal, transverse spin-flip probabilities, no collective enhancement evidence for spin-longitudinal response function.
doi: 10.1103/PhysRevC.34.627
1985WE12 Phys.Rev. C32, 1474 (1985) J.S.Wesick, P.G.Roos, N.S.Chant, C.C.Chang, A.Nadasen, L.Rees, N.R.Yoder, A.A.Cowley, S.J.Mills, W.W.Jacobs 2H, 3,4He(p(pol), p') and 3,4He(p(pol), d') Continuum Yields for 100 and 150 MeV Protons NUCLEAR REACTIONS 2H, 3,4He(polarized p, p'), 3,4He(polarized p, d), E=100, 150 MeV; measured inclusive σ(θ), analyzing power vs θ; deduced reaction mechanism. DWIA analysis.
doi: 10.1103/PhysRevC.32.1474
1984CA17 Phys.Rev.Lett. 53, 144 (1984) T.A.Carey, K.W.Jones, J.B.McClelland, J.M.Moss, L.B.Rees, N.Tanaka, A.D.Bacher Inclusive Scattering of 500-MeV Protons and Pionic Enhancement of the Nuclear Sea-Quark Distribution NUCLEAR REACTIONS 2H, Pb(polarized p, pX), E=500 MeV; measured polarization transfer observables, inclusive scattering; deduced longitudinal, transverse response functions, no mass dependence, no pion field enhancement.
doi: 10.1103/PhysRevLett.53.144
1983BL11 Phys.Rev. C28, 2033 (1983) M.Blecher, K.Gotow, R.L.Burman, M.V.Hynes, M.J.Leitch, N.S.Chant, L.Rees, P.G.Roos, F.E.Bertrand, E.E.Gross, F.E.Obenshain, T.P.Sjoreen, G.S.Blanpied, B.M.Preedom, B.G.Ritchie Isospin Effects in π± Elastic Scattering from 12C, 13C, and 14C at 65 and 80 MeV NUCLEAR REACTIONS 12,13,14C(π+, π+), (π-, π-), E=65, 80 MeV; measured σ(θ); deduced isospin effects, pion-nucleus optical potential parameters.
doi: 10.1103/PhysRevC.28.2033
1982CH13 Phys.Rev.Lett. 48, 1784 (1982) Distorted-Wave Analysis of the Reaction 12C(π+, π+p)11B NUCLEAR REACTIONS 12C(π+, π+p), E=199 MeV; analyzed σ(θ(π), θp) vs pion momentum; deduced reaction mechanism. DWIA calculations.
doi: 10.1103/PhysRevLett.48.1784
1982RE15 Phys.Rev. C26, 1580 (1982) Distortion Effects in (π, πp) Quasifree Knockout Reactions NUCLEAR REACTIONS 16O, 40Ca(π+, π+p), E=100-300 MeV; calculated σ(θ(π), θp, E(π)). DWIA, quasifree knockout.
doi: 10.1103/PhysRevC.26.1580
1981RO14 Phys.Rev. C24, 2647 (1981) Distorted Wave Impulse Approximation Calculations of (π+, 2p) Reactions in a Quasideuteron Model NUCLEAR REACTIONS 16O, 40Ca, 90Zr(π+, 2p), E=25-350 MeV; calculated σ(θ1, θ2, E). DWIA, quasideuteron model.
doi: 10.1103/PhysRevC.24.2647
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