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NSR database version of March 21, 2024.

Search: Author = J.F.Petersen

Found 13 matches.

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1983PE08      Phys.Rev. C28, 710 (1983)

J.F.Petersen, R.J.Ascuitto, D.G.Kovar, W.Henning, S.J.Sanders

12C on 48Ca Transfer Reactions: A test of the effective Q-value model

NUCLEAR REACTIONS 48Ca(12C, 11B), (12C, 13C), (12C, 12C), E=45 MeV; measured σ(θ), σ(E(11B)), σ(E(13C)); deduced optical model parameters. DWBA, effective Q model analyses.

doi: 10.1103/PhysRevC.28.710
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1981BE11      Phys.Lett. 100B, 117 (1981)

R.R.Betts, S.B.DiCenzo, J.F.Petersen

High Spin Resonances in 28Si + 28Si Scattering

NUCLEAR REACTIONS 28Si(28Si, 28Si), (28Si, 28Si'), E=90-130 MeV; measured σ(E, θ); deduced channel correlation in resonance structure. 56Ni deduced high spin resonances.

doi: 10.1016/0370-2693(81)90756-5
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1981DI06      Phys.Rev. C23, 2561 (1981)

S.B.DiCenzo, J.F.Petersen, R.R.Betts

Fusion of 28Si + 28Si

NUCLEAR REACTIONS 28Si(28Si, X), E=80-140 MeV; measured σ(evaporation residue); deduced σ(fusion E). Entrance channel, TDHF, yrast limit models.

doi: 10.1103/PhysRevC.23.2561
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1980PE08      Phys.Lett. B94, 32 (1980)

J.F.Petersen, R.J.Ascuitto, E.A.Seglie

Heavy-Ion Induced Stripping and Pickup Reactions Involving Closed Shell Nuclei

NUCLEAR REACTIONS 208Pb(16O, 15N), E=104, 138.5, 312.6 MeV; 208Pb(16O, 17O), E=104 MeV; calculated σ(θ). DWBA, state dependence in exit channel petential.

doi: 10.1016/0370-2693(80)90818-7
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1979BE21      Phys.Rev.Lett. 43, 253 (1979)

R.R.Betts, S.B.DiCenzo, J.F.Petersen

Energy-Dependent Structure in 28Si + 28Si Scattering

NUCLEAR REACTIONS 28Si(28Si, 28Si), (28Si, 28Si'), (28Si, 24Mg), E=80-150 MeV; measured σ(E, θ); deduced reaction mechanism.

doi: 10.1103/PhysRevLett.43.253
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1979KU01      Nucl.Phys. A313, 434 (1979)

S.Kubono, T.K.Li, D.Dehnhard, D.A.Lewis, J.F.Petersen, J.L.Artz

The 18O(18O, 16O)20O Reaction at 52 MeV

NUCLEAR REACTIONS 18O(18O, 16O), 18O(18O, 18O), E(lab)=52 MeV; measured σ(θ). Enriched target. Microscopic analysis, exact finite-range DWBA.

doi: 10.1016/0375-9474(79)90511-6
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1979SE02      Phys.Rev.Lett. 42, 956 (1979)

E.A.Seglie, J.F.Petersen, R.J.Ascuitto

Model for an Effective Q Value for Heavy-Ion-Induced Transfer Reactions

NUCLEAR REACTIONS 48Ca(16O, 17O), (16O, 15N), (16O, 18O), E=56 MeV; calculated σ(θ). DWBA analysis with effective Q.

doi: 10.1103/PhysRevLett.42.956
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1978AS04      Phys.Rev.Lett. 41, 1159 (1978)

R.J.Ascuitto, J.F.Petersen, E.A.Seglie

Role of the Exit-Channel Distorting Potential in Heavy-Ion-Induced Inelastic Scattering

NUCLEAR REACTIONS 40Ca(16O, 16O'), E=60 MeV; calculated σ(θ). DWBA analysis.

doi: 10.1103/PhysRevLett.41.1159
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1977PE08      Phys.Rev. C15, 1719 (1977)

J.F.Petersen, D.Dehnhard, B.F.Bayman

Single-Neutron Transfer to 29Si, 41,49Ca, and 55Fe States Induced by the (18O, 17O(g.s.)) And (18O, 17O(0.87 MeV)) Reactions

NUCLEAR REACTIONS 28Si, 40,48Ca, 54Fe(18O, 17O), E=50 MeV; measured σ(θ). 17O, 29Si, 41,49Ca, 55Fe levels deduced S.

doi: 10.1103/PhysRevC.15.1719
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1976MO10      Phys.Lett. 61B, 213 (1976)

H.P.Morsch, D.A.Lewis, J.F.Petersen

Inelastic 18O + 48Ca Scattering and a Microscopic Description Using a Renormalized Effective Interaction

NUCLEAR REACTIONS 48Ca(18O, 18O'), E=50 MeV; measured σ(θ) to levels in 18O, 48Ca; deduced optical potentials.

doi: 10.1016/0370-2693(76)90131-3
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1976PE01      Phys.Rev.Lett. 36, 307 (1976)

J.F.Petersen, D.A.Lewis, D.Dehnhard, H.P.Morsch, B.F.Bayman

Two-Neutron Stripping Reaction (18O, 16O) on 48Ca

NUCLEAR REACTIONS 48Ca(18O, 16O), E=50 MeV; measured σ(E(16O), θ). DWBA analysis.

doi: 10.1103/PhysRevLett.36.307
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1975PE11      Nucl.Phys. A255, 307 (1975)

J.F.Petersen

The (3He, n) Reaction in the Lower 2s1d Shell

NUCLEAR REACTIONS 16,18O, 20,22Ne(3He, n), E=18.3 MeV; measured σ(En, θ). 18,20Ne, 22,24Mg deduced levels, L, J, π. Enriched targets.

doi: 10.1016/0375-9474(75)90682-X
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1974PE03      Phys.Lett. 49B, 425 (1974)

J.F.Petersen, W.C.Parkinson

The 40Ar(τ, n)42Ca Reaction

NUCLEAR REACTIONS 40Ar(3He, n), E=18.65 MeV; measured σ(θ, En). 42Ca level deduced relative strength.

doi: 10.1016/0370-2693(74)90625-X
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