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NSR database version of April 27, 2024.

Search: Author = R.Kozack

Found 10 matches.

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1993KO04      Nucl.Phys. A552, 469 (1993)

R.Kozack, D.G.Madland

Parameter Correlations and Ambiguities in Dirac Phenomenology

NUCLEAR REACTIONS 40Ca(polarized p, p), E=181 MeV; analyzed σ(θ), analyzing power, spin rotation function vs θ; deduced equivalent potential families, parameters. Dirac phenomenology.

doi: 10.1016/0375-9474(93)90279-7
Citations: PlumX Metrics


1991MI01      Phys.Rev. C43, 801 (1991)

V.K.Mishra, S.Hama, B.C.Clark, R.E.Kozack, R.L.Mercer, L.Ray

Implications of Various Spin-One Relativistic Wave Equations for Intermediate-Energy Deuteron-Nucleus Scattering

NUCLEAR REACTIONS 58Ni(polarized d, d), E=400 MeV; 40Ca(polarized d, d), E=700 MeV; calculated σ(θ), vector, tensor analyzing power vs θ. Various spin-one relativistic equations.

doi: 10.1103/PhysRevC.43.801
Citations: PlumX Metrics


1990KO07      Nucl.Phys. A509, 664 (1990)

R.Kozack, D.G.Madland

Prediction of Intermediate-Energy Neutron Scattering Observables from a Dirac Optical Potential

NUCLEAR REACTIONS 208Pb(n, n), E=95-250 MeV; calculated σ(E), σ(θ). Global optical potential, Dirac phenomenology.

doi: 10.1016/0375-9474(90)90247-J
Citations: PlumX Metrics


1989KO09      Phys.Rev. C39, 1461 (1989)

R.Kozack, D.G.Madland

Dirac Optical Potentials for Nucleon Scattering by 208Pb at Intermediate Energies

NUCLEAR REACTIONS 208Pb(p, p), (polarized p, p), E=80-800 MeV; analyzed σ(θ), analyzing power, spin rotation parameters, total reaction σ; deduced model parameters. Dirac optical potentials.

doi: 10.1103/PhysRevC.39.1461
Citations: PlumX Metrics


1989KO15      Phys.Rev. C39, 1902 (1989)

R.Kozack

Dirac Equation Analysis of Intermediate-Energy 3He-Nucleus Scattering

NUCLEAR REACTIONS 40Ca(3He, 3He), (t, t), E=197, 217 MeV; calculated σ(θ), P(θ), reaction σ. Dirac phenomenology, Watanabe model.

doi: 10.1103/PhysRevC.39.1902
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1989KO34      Phys.Rev. C40, 2181 (1989)

R.E.Kozack, B.C.Clark, S.Hama, V.K.Mishra, R.L.Mercer, L.Ray

Spin-One Kemmer-Duffin-Petiau Equations and Intermediate-Energy Deuteron-Nucleus Scattering

NUCLEAR REACTIONS 58Ni(polarized d, d), E=400 MeV; 40Ca(polarized d, d), E=700 MeV; calculated σ(θ), analyzing power vs θ. Phenomenological, microscopic nucleon-nucleus potentials, spin-one Kemmer-Duffin-Petiau equations.

doi: 10.1103/PhysRevC.40.2181
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1988HA08      Phys.Rev. C37, 1111 (1988)

S.Hama, B.C.Clark, R.E.Kozack, S.Shim, E.D.Cooper, R.L.Mercer, B.D.Serot

Dirac Optical Potentials Constrained by a Dirac-Hartree Approach to Nuclear Structure

NUCLEAR REACTIONS 16O, 48,40Ca, 90Zr, 208Pb(p, p), (polarized p, p), E=800 MeV; calculated σ(θ), polarization observables. Relativistic treatment.

doi: 10.1103/PhysRevC.37.1111
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1988KO12      Phys.Rev. C37, 2898 (1988)

R.E.Kozack, B.C.Clark, S.Hama, V.K.Mishra, G.Kalbermann, R.L.Mercer, L.Ray

Relativistic Deuteron-Nucleus Scattering in the Kemmer-Duffin-Petiau Formalism

NUCLEAR REACTIONS 58Ni(d, d), (polarized d, d), E=400 MeV; measured σ(θ), analyzing power vs θ. Kemmer-Duffin-Petiau equations.

doi: 10.1103/PhysRevC.37.2898
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1987CO32      Phys.Rev. C36, 2170 (1987)

E.D.Cooper, B.C.Clark, R.Kozack, S.Shim, S.Hama, J.I.Johansson, H.S.Sherif, R.L.Mercer, B.D.Serot

Global Optical Potentials for Elastic p + 40Ca Scattering using the Dirac Equation

NUCLEAR REACTIONS 40Ca(p, p), (polarized p, p), E=400 MeV; calculated σ(θ), analyzing power, spin rotation function vs θ; deduced global model parameters. Relativistic optical model.

doi: 10.1103/PhysRevC.36.2170
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1986RA05      Phys.Rev.Lett. 56, 2465 (1986)

L.Ray, G.W.Hoffmann, M.L.Barlett, J.J.Jarmer, B.C.Clark, R.E.Kozack, R.L.Mercer, G.R.Burleson, S.Hama

Sensitivity of p(pol) + A(pol) Elastic Spin Observables to Relativistic Aspects of Nuclear Structure

NUCLEAR REACTIONS 13C(polarized p, p), E=500 MeV; calculated σ(θ), polarization, other parameters vs θ; deduced relativistic effects role.

doi: 10.1103/PhysRevLett.56.2465
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Note: The following list of authors and aliases matches the search parameter R.Kozack: , R.E.KOZACK