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NSR database version of May 10, 2024.

Search: Author = E.A.Bakkum

Found 14 matches.

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1990BA18      Nucl.Phys. A511, 117 (1990)

E.A.Bakkum, P.Decowski, K.A.Griffioen, R.J.Meijer, R.Kamermans

Incomplete Fusion in the Reaction 20Ne + 27Al at 216, 294 and 384 MeV

NUCLEAR REACTIONS 27Al(20Ne, αX), E=216, 294, 384 MeV; measured exclusive, inclusive α(evaporation residue)-correlation; deduced reaction mechanism. Monte Carlo simulation, impact parameter range for complete, incomplete fusion.

doi: 10.1016/0375-9474(90)90029-L
Citations: PlumX Metrics

1989BA17      Phys.Rev. C39, 2094 (1989)

E.A.Bakkum, P.Decowski, K.A.Griffioen, R.J.Meijer, R.Kamermans

Impact Parameter Dependence of Incomplete Fusion between 10 and 20 MeV/Nucleon

NUCLEAR REACTIONS 27Al(20Ne, X), E=10.8, 14.7, 19.2 MeV/nucleon; measured (heavy residue)α-coin, Eα, Iα; deduced reaction mechanism competition, impact parameter dependence.

doi: 10.1103/PhysRevC.39.2094
Citations: PlumX Metrics

1988DE27      Phys.Rev. C37, 2495 (1988)

P.Decowski, E.A.Bakkum, P.F.Box, K.A.Griffioen, R.Kamermans, R.J.Meijer

Strongly Dissipative Processes in the 28Si + (nat)Si Reaction at 12.4 MeV/Nucleon

NUCLEAR REACTIONS 28Si(28Si, X), E=12.4 MeV/nucleon; measured fragment velocities; deduced reaction mechanism.

doi: 10.1103/PhysRevC.37.2495
Citations: PlumX Metrics

1988GR12      Phys.Rev. C37, 2502 (1988)

K.A.Griffioen, E.A.Bakkum, P.Decowski, R.J.Meijer, R.Kamermans

Sources of Light Particles from Fusion-Like Processes in the 20Ne + 27Al Reaction at 19.2 MeV/Nucleon

NUCLEAR REACTIONS 27Al(20Ne, X), E=19.2 MeV/nucleon; measured σ(fragment θ, E) for fragment Z=9-16; deduced light particle emission mechanism.

doi: 10.1103/PhysRevC.37.2502
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1987DE16      Z.Phys. A327, 235 (1987)

P.Decowski, E.A.Bakkum, P.Box, K.A.Griffioen, R.Kamermans, R.J.Meijer

Dissipative Processes at Forward Angles in the 28Si + (nat)Si Reaction at 12.4 MeV/Nucleon

NUCLEAR REACTIONS Si(28Si, X), E=12.4 MeV/nucleon; measured Z=12-19 residues velocity spectra, σ; deduced reaction mechanism. Tof, ΔE-E detection system.

1986BA31      Nucl.Instrum.Methods Phys.Res. A243, 435 (1986)

E.A.Bakkum, A.van den Brink, R.J.Meijer, R.Kamermans

Detection System for the Identification of Heavy Residues

NUCLEAR REACTIONS 197Au(12C, 12C), E=39 MeV; measured σ(E(12C)). Tof, ΔE-E(R) telescope.

doi: 10.1016/0168-9002(86)90977-0
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1986VA10      Phys.Rev. C33, 1851 (1986)

C.P.M.van Engelen, E.A.Bakkum, R.J.Meijer, R.Kamermans

Breakup of Ne at 11 and 15 MeV/nucleon

NUCLEAR REACTIONS 54Fe(20Ne, αX), E=216, 294 MeV; measured αX(θ) for X=12C, 16O; deduced projectile breakup mechanism.

doi: 10.1103/PhysRevC.33.1851
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1986VA18      Z.Phys. A324, 121 (1986)

C.P.M.van Engelen, E.A.Bakkum, R.J.Meijer, R.Kamermans

Excitation-Energy sharing in 20Ne Induced Reactions

NUCLEAR REACTIONS 54Fe(20Ne, αX), E=11, 15 MeV/nucleon; measured αX(θ) for X=12C, 14,15N; deduced reaction mechanism, excitation energy sharing asymmetry.

1986VA23      Nucl.Phys. A457, 375 (1986)

C.P.M.van Engelen, E.A.Bakkum, R.J.Meijer, R.Kamermans

Peripheral Reactions Induced by 20Ne at 11 and 15 MeV/Nucleon

NUCLEAR REACTIONS 54Fe(20Ne, X), E=216, 294 MeV; measured fragment spectra for X=Ne, O, N, C, (projectile-like fragment)(light particle)(θ); deduced reaction mechanism, inclusive contribution, excitation-energy sharing. Monte Carlo simulation.

doi: 10.1016/0375-9474(86)90385-4
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1984AR16      Nucl.Phys. A430, 234 (1984)

H.F.R.Arciszewski, E.A.Bakkum, C.P.M. Van Engelen, P.M.Endt, R.Kamermans

The Structure of 26Mg Investigated with the (d, p) Reaction

NUCLEAR REACTIONS 25Mg(d, p), E=13 MeV; measured σ(Ep), σ(θ). 26Mg levels deduced J, π, (2J+1)S. Magnetic spectrograph, gas ionization chamber. DWBA analysis, shell model calculations.

doi: 10.1016/0375-9474(84)90203-3
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1984BE06      Nucl.Phys. A412, 159 (1984)

A.Becker, C.Alderliesten, E.A.Bakkum, C.P.M.Van Engelen, R.Kamermans

Four-Nucleon Transfer with the 32S(16O, 12C)36Ar Reaction

NUCLEAR REACTIONS 32S(16O, 12C), E=45.5 MeV; measured σ(E(12C), θ). 36Ar levels deduced J, π.. Magnetic spectrograph, gas-ionization chamber. Exact finite-range DWBA analyses, shell-model calculations, full cluster expansion.

doi: 10.1016/0375-9474(84)90390-7
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1984VA04      Phys.Rev. C29, 1109 (1984)

A.M.van den Berg, E.A.Bakkum, P.W.M.Glaudemans, D.Zwarts

Shell Model Calculations for the Mo(d, 6Li)Zr Reaction

NUCLEAR STRUCTURE 90,93,94Zr, 91,93Nb, 92,95,98Mo; calculated levels. Shell model.

NUCLEAR REACTIONS 94,96,98,100Mo(d, 6Li), E=45 MeV; calculated spectroscopic factors. Shell model wave functions.

doi: 10.1103/PhysRevC.29.1109
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1982BE13      Phys.Lett. 110B, 199 (1982)

A.Becker, E.A.Bakkum, R.Kamermans

A Microscopic Description of the (p, t) Reaction to Low-Lying 0+ States in the Even Ge Isotopes

NUCLEAR REACTIONS 72,74,76Ge(p, t), E=13 MeV; measured σ(θ). 70,72,74Ge levels deduced normalization factor. Sub-Coulomb energies, zero-range coupled-channels calculation.

doi: 10.1016/0370-2693(82)91235-7
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1982BE45      Nucl.Phys. A388, 477 (1982)

A.Becker, C.Alderliesten, E.A.Bakkum, K.Van Der Borg, C.P.M.Van Engelen, L.Zybert, R.Kamermans

A CCBA Description of the (p, t) Reaction to Low-Lying 0+ States in the Ge Isotopes

NUCLEAR REACTIONS 72,74,76Ge(p, t), E=13 MeV; measured σ(E(t), θ). Magnetic spectrograph, enriched targets. CCBA analysis.

doi: 10.1016/0375-9474(82)90472-9
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