NSR Query Results
Output year order : Descending NSR database version of April 26, 2024. Search: Author = O.Van Dyck Found 15 matches. 1987RA17 Phys.Lett. 194B, 338 (1987) A.Rahbar, B.Aas, E.Bleszynski, M.Bleszynski, K.Ganezer, G.J.Igo, F.Irom, B.E.Bonner, O.Van Dyck, M.W.McNaughton, J.B.Roberts, C.Hollas, R.D.Ransome, P.J.Riley Some Proton Spin Observables Obtained in p-d Elastic Scattering at 500 and 800 MeV NUCLEAR REACTIONS 2H(polarized p, p), E=500, 800 MeV; measured spin transfer observables, polarization, asymmetry. Multiple scattering model.
doi: 10.1016/0370-2693(87)91061-6
1987RI06 Phys.Lett. 197B, 23 (1987) P.J.Riley, M.Bachman, C.L.Hollas, K.H.McNaughton, S.-W.Xu, B.E.Bonner, O.B.Van Dyck, J.McGill, M.W.McNaughton, J.C.Peng, R.R.Silbar, J.Dubach, W.M.Kloet Polarization Observables for the Reaction pp → ppπ0 at 800 MeV NUCLEAR REACTIONS 1H(polarized p, pπ0), E=647, 733, 800 MeV; measured induced polarization, analyzing power, Wolfenstein parameters. Orthogonal beam polarization.
doi: 10.1016/0370-2693(87)90334-0
1985HO16 Phys.Rev.Lett. 55, 29 (1985) C.L.Hollas, K.H.McNaughton, P.J.Riley, Shen-wu Xu, B.E.Bonner, O.B.van Dyck, J.McGill, M.W.McNaughton, J.C.Peng, R.R.Silbar, J.Dubach, W.M.Kloet Wolfenstein Polarization Observables for the Reaction p(pol)p → p(pol)πn at 800 MeV NUCLEAR REACTIONS 1H(polarized p, pπ+), E=650, 733, 800 MeV; measured Wolfenstein polarization parameters, induced polarization, σ(θ1, θ2) vs proton momentum.
doi: 10.1103/PhysRevLett.55.29
1985MC07 Nucl.Instrum.Methods 241, 435 (1985) M.W.McNaughton, B.E.Bonner, H.Ohnuma, O.B.Van Dijk, Sun Tsu-Hsun, C.L.Hollas, D.J.Cremans, K.H.McNaughton, P.J.Riley, R.F.Rodebaugh, Shen-Wu Xu, S.E.Turpin, B.Aas, G.S.Weston The p-C Analyzing Power between 100 and 750 MeV NUCLEAR REACTIONS C(polarized p, pX), E=80-584 MeV; measured inclusive analyzing power vs θ. Large solid angle polarimeter.
doi: 10.1016/0168-9002(85)90595-9
1985SU02 Phys.Rev. C31, 515 (1985) Sun Tsu-hsun, B.E.Bonner, M.W.McNaughton, H.Ohnuma, O.B.van Dyck, G.S.Weston, B.Aas, E.Bleszynski, M.Bleszynski, G.J.Igo, D.J.Cremans, C.L.Hollas, K.H.McNaughton, P.J.Riley, R.F.Rodebaugh, Shen-wu Xu, S.E.Turpin Measurements of the Spin-Rotation Parameters for (p(pol)d → p(pol)d) Elastic Scattering at 496, 647, and 800 MeV NUCLEAR REACTIONS 2H(polarized p, p), E=496, 647, 800 MeV; measured spin rotation parameters, induced polarization, analyzing power vs θ. Liquid 2H target, noneikonal multiple-scattering theory.
doi: 10.1103/PhysRevC.31.515
1984HO20 Phys.Rev. C30, 1251 (1984) C.L.Hollas, D.J.Cremans, K.H.McNaughton, P.J.Riley, R.F.Rodebaugh, Shen-wu Xu, B.E.Bonner, M.W.McNaughton, H.Ohnuma, O.B.van Dyck, Sun Tsu-hsun, S.E.Turpin, B.Aas, G.S.Weston D(SS), D(LL), D(SL), D(LS), and P for pp → pp at 600 to 800 MeV NUCLEAR REACTIONS 1H(polarized p, p), E=600-800 MeV; measured spin parameters D(SS), D(LL), D(SL), D(LS), polarization, K(SS), K(LL), K(SL), K(LS), vs θ; deduced phase shifts.
doi: 10.1103/PhysRevC.30.1251
1982MC04 Phys.Rev. C25, 1967 (1982) M.W.McNaughton, B.E.Bonner, W.D.Cornelius, E.W.Hoffman, O.B.van Dyck, R.L.York, R.D.Ransome, C.L.Hollas, P.J.Riley, K.Toshioka Spin Transfer Measurements for pp → pp at 800 MeV NUCLEAR REACTIONS 1H(polarized p, p), E=800 MeV; measured spin depolarization, transfer parameters.
doi: 10.1103/PhysRevC.25.1967
1982MC07 Phys.Rev. C26, 249 (1982) M.W.McNaughton, B.E.Bonner, E.W.Hoffman, O.B.van Dyck, C.L.Hollas, P.J.Riley, K.H.McNaughton, K.Imai, K.Toshioka, J.Roberts, S.E.Turpin, B.Aas, A.Rahbar Spin Transfer Measurements for pp → pp at 647 MeV NUCLEAR REACTIONS 1H(polarized p, p), E=647 MeV; measured spin depolarization, spin transfer parameters vs θ.
doi: 10.1103/PhysRevC.26.249
1982RA20 Nucl.Instrum.Methods 201, 315 (1982) R.D.Ransome, C.L.Hollas, P.J.Riley, B.E.Bonner, W.D.Cornelius, O.B.van Dyck, E.W.Hoffman, S.A.Wood, K.Toshioka Measurement of the p-C Analyzing Power between 100 and 750 MeV and the p-Be Analyzing Power at 780 MeV NUCLEAR REACTIONS C(polarized p, pX), E=100-750 MeV; Be(polarized p, pX), E=780 MeV; measured analyzing power vs θ. Inclusive reaction.
doi: 10.1016/0167-5087(82)90558-0
1981BL07 Phys.Rev. C23, 2599 (1981) G.S.Blanpied, G.W.Hoffmann, M.L.Barlett, J.A.McGill, S.J.Greene, L.Ray, O.B.Van Dyck, J.Amann, H.A.Thiessen Large Angle Scattering of 0.8 GeV Protons from 12C NUCLEAR REACTIONS 12C(p, p'), E=800 MeV; measured σ(θ). 12C deduced charge density multipole moments M(E2), M(E4). Optical model, DWBA, coupled-channels analyses, rotational model.
doi: 10.1103/PhysRevC.23.2599
1981BR21 Phys.Rev. C24, 2157 (1981) H.Brody, S.Frankel, W.Frati, O.B.Van Dyck Elastic and Inclusive Analyzing Power of Deuterium for 0.8 GeV Protons NUCLEAR REACTIONS 2H(polarized p, p), E=800 MeV; measured analyzing power vs momentum; deduced rescattering effects.
doi: 10.1103/PhysRevC.24.2157
1981FR24 Phys.Rev. C24, 2684 (1981) S.Frankel, W.Frati, C.F.Perdrisat, O.B.Van Dyck Backward Production of High Energy Protons in the (p, 2p) Reaction in 6Li NUCLEAR REACTIONS 6Li, 9Be(p, 2p), E=0.8 GeV; measured pp-coin, σ(θ1, θ2) vs proton momentum; deduced excitation spectrum. Two magnetic spectrometers.
doi: 10.1103/PhysRevC.24.2684
1978FR12 Phys.Rev.Lett. 41, 148 (1978) S.Frankel, W.Frati, M.Gazzaly, G.W.Hoffmann, O.Van Dyck, R.M.Woloshyn Analyzing Power in Inclusive Proton-Nucleus Cross Sections. NUCLEAR REACTIONS 6Li, 12C, 181Ta(polarized p, p), (polarized p, X), E=800 MeV; measured A(θ).
doi: 10.1103/PhysRevLett.41.148
1976FR05 Phys.Rev. C13, 737 (1976) S.Frankel, W.Frati, V.Highland, O.Van Dyck, R.Werbeck Experimental Search for Condensed Nuclear States NUCLEAR REACTIONS Cu, Ta, C, Be(p, p), E=600 MeV; Ta, Pt, Au(p, p), E=800 MeV; measured σ for backward scattering; deduced no condensed nuclei.
doi: 10.1103/PhysRevC.13.737
1976FR07 Phys.Rev.Lett. 36, 642 (1976) S.Frankel, W.Frati, O.Van Dyck, R.Werbeck, V.Highland Inclusive Cross Sections for 180° Production of High-Energy Protons, Deuterons, and Tritons in p-Nucleus Collisions at 600 and 800 MeV NUCLEAR REACTIONS Ta, Cu, C, Be(p, p), (p, d), (p, t), E=600 MeV; Ta, Ag, Pt(p, p), (p, d), (p, t), E=800 MeV; measured σ.
doi: 10.1103/PhysRevLett.36.642
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