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NSR database version of May 24, 2024.

Search: Author = G.Ingold

Found 21 matches.

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1994SC05      Nucl.Phys. A568, 169 (1994)

E.Schwinn, U.Jahnke, J.L.Charvet, B.Cramer, H.Doubre, J.Frehaut, J.Galin, B.Gatty, D.Guerreau, G.Ingold, D.Jacquet, D.X.Jiang, B.Lott, M.Morjean, C.Magnago, Y.Patin, J.Pouthas, E.Piasecki, A.Sokolov

Evolution of Fission and Competing Decay Mechanisms in 40Ar-Induced Reactions on Au, Th at 27-77 MeV/u of Incident Energy

NUCLEAR REACTIONS 197Au, 232Th(40Ar, X), (40Ar, F), E=27, 35, 44, 77 MeV/nucleon; measured neutron multiplicity distributions, σ(θ1, θ2), fission fragment σ(φ), heavy residue σ(E, φ); deduced linear-momentum transfer versus neutron multiplicity correlation, reaction mechanisms.

doi: 10.1016/0375-9474(94)90009-4
Citations: PlumX Metrics


1993LO09      Z.Phys. A346, 201 (1993)

B.Lott, J.L.Charvet, E.Crema, G.Duchene, H.Doubre, J.Frehaut, J.Galin, B.Gatty, D.Guerreau, G.Ingold, D.Jacquet, U.Jahnke, D.X.Jiang, C.Magnago, M.Morjean, Y.Patin, E.Piasecki, J.Pouthas, Y.Pranal, F.Saint-Laurent, E.Schwinn, A.Sokolov, J.L.Uzureau, X.M.Wang

Inclusive Excitation-Energy Distributions of Hot Nuclei from 44 MeV/Nucleon Ar- and 32 MeV/Nucleon Kr-Induced Reactions

NUCLEAR REACTIONS 100Mo, 112,124Sn, 165Ho, 197Au, 232Th, 238U, 92,100Mo, 165Ho, 197Au, 232Th(Ar, X), E=44 MeV/nucleon; 100Mo, 112,124Sn, 165Ho, 197Au, 232Th, 238U, 92,100Mo, 165Ho, 197Au(86Kr, X), E=32 MeV/nucleon; measured inclusive neutron multiplicity; deduced dissipative collision evidence, associated neutron multiplicity. Statistical model.

doi: 10.1007/BF01306080
Citations: PlumX Metrics


1993SO10      Nucl.Phys. A562, 273 (1993)

A.Sokolov, D.Guerreau, J.L.Charvet, B.Cramer, H.Doubre, J.Frehaut, J.Galin, B.Gatty, G.Ingold, D.Jacquet, U.Jahnke, D.X.Jiang, B.Lott, C.Magnago, M.Morjean, Y.Patin, E.Piasecki, J.Pouthas, E.Schwinn

Emission of Complex Fragments in the Reaction Ar + Au at 44 and 77 A.MeV

NUCLEAR REACTIONS 197Au(40Ar, X), E=1760, 3080 MeV; measured neutron multiplicities, complex fragment; deduced reaction mechanisms. Hot nucleus formation.

doi: 10.1016/0375-9474(93)90200-H
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1992MO05      Nucl.Phys. A537, 667 (1992)

C.Moisan, N.De Takacsy, J.Barrette, S.K.Mark, G.Ingold, J.Stachel, P.Braun-Munzinger, N.Alamanos, Y.Cassagnou, J.M.Hisleur, J.Julien, R.Lacey, R.Legrain, P.Roussel-Chomaz, V.Bellini, L.Sperduto

Neutral Pion Production in the Reactions 16O + 27Al, 58Ni, 208Pb at E(lab) = 95 MeV/Nucleon

NUCLEAR REACTIONS 27Al, 58Ni, 208Pb(16O, π0X), E=95 MeV/nucleon; measured σ, σ(θ); deduced pion production, absorption mechanism. Moving thermal source model, fireball model, mean field effects.

doi: 10.1016/0375-9474(92)90373-R
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1991MO04      Nucl.Phys. A524, 179 (1991)

M.Morjean, H.Doubre, J.Galin, D.Guerreau, D.X.Jiang, J.Pouthas, J.L.Charvet, J.Frehaut, B.Lott, C.Magnago, Y.Patin, Y.Pranal, D.Jacquet, G.Ingold, U.Jahnke

Energy Dissipation in Peripheral Reactions Induced by 40Ar Beams between 27 and 44 MeV/u

NUCLEAR REACTIONS 197Au, 103Rh(40Ar, X), E=27, 35, 44 MeV/u; measured neutron multiplicities, projectile-like fragments; deduced reaction mechanisms.

doi: 10.1016/0375-9474(91)90022-X
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1989JI08      Nucl.Phys. A503, 560 (1989)

D.X.Jiang, H.Doubre, J.Galin, D.Guerreau, E.Piasecki, B.Cramer, G.Ingold, U.Jahnke, E.Schwinn, J.L.Charvet, J.Frehaut, B.Lott, C.Magnago, M.Morjean, Y.Patin, Y.Pranal, J.L.Uzureau, B.Gatty, D.Jacquet

Saturation of the Thermal Energy Deposited in Au and Th Nuclei by Ar Projectiles between 27 and 77 MeV/u

NUCLEAR REACTIONS 197Au, 232Th(40Ar, X), E=27, 35, 44, 77 MeV/nucleon; measured neutron, light charged particle multiplicities; deduced thermal energy deposit. Hot nucleus formation.

doi: 10.1016/0375-9474(89)90249-2
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1989KO03      Phys.Rev. C39, 687 (1989)

E.A.Koop, G.Feige, L.Schmidt, H.Jungclas, R.Brandt, G.Ingold, D.C.Hoffman

Direct Measurements of Neutron Emission in Complete and Incomplete 12C-Induced Fusion Reactions

NUCLEAR REACTIONS 197Au, 209Bi, 232Th, 238U(12C, X), (12C, F), E=120 MeV; measured neutron multiplicity following incomplete fusion, fission; deduced average neutron multiplicity, fission mechanism.

doi: 10.1103/PhysRevC.39.687
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1989SC34      Nucl.Phys. A502, 551c (1989)

E.Schwinn, B.Cramer, G.Ingold, U.Jahnke, D.Hilscher, M.Lehmann, H.Rossner

Fission-Fragment Angular Distributions Under Extreme Conditions: Following sequential to deep-inelastic collisions and complete fusion in 40Ar(10 MeV/u) + (Nat)U

NUCLEAR REACTIONS U(40Ar, X), (40Ar, F), E=10 MeV/nucleon; measured fission, evaporation residue (fragment)n-coin; deduced fission mechanisms.

doi: 10.1016/0375-9474(89)90688-X
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1988GA21      Z.Phys. A331, 63 (1988)

J.Galin, G.Ingold, U.Jahnke, D.Hilscher, M.Lehmann, H.Rossner, E.Schwinn

Cross Measurements of Linear Momentum Transfer and Energy Dissipation in Collisions between 290 MeV 20Ne and 238U

NUCLEAR REACTIONS 238U(20Ne, F), E=290 MeV; measured fission fragment folding angle distribution, neutron multiplicity distribution; deduced linear momentum transfer.


1988MO06      Phys.Lett. 203B, 215 (1988)

M.Morjean, J.Frehaut, D.Guerreau, J.L.Charvet, G.Duchene, H.Doubre, J.Galin, G.Ingold, D.Jacquet, U.Jahnke, D.X.Jiang, B.Lott, C.Magnago, Y.Patin, J.Pouthas, Y.Pranal, J.L.Uzureau

Approaching Peripheral Collisions in the Reaction Ar + Au at 27.2 MeV/u by the Associated Neutron Multiplicities

NUCLEAR REACTIONS 197Au(40Ar, X), E=27 MeV/nucleon; measured neutron multiplicity for Z=6-19, fragment multiplicity vs E, σ(fragment E); deduced reaction mechanism.

doi: 10.1016/0370-2693(88)90541-2
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1987BU07      Phys.Rev. C36, 90 (1987)

M.Burgel, H.Fuchs, H.Homeyer, G.Ingold, U.Jahnke, G.Thoma

Projectile-Like Fragments from 20Ne + 197Au and the Correlated Energy Transfer Studied by Counting the Simultaneously Emitted Neutrons

NUCLEAR REACTIONS 197Au(20Ne, xnX), E=290 MeV; measured projectile-like(fragment)n-coin vs neutron number, θ; deduced target excitation, fragment energy correlation, optimum Q-value, transfer, break-up distinction.

doi: 10.1103/PhysRevC.36.90
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1986HO01      Phys.Rev. C33, 143 (1986)

E.Holub, D.Hilscher, G.Ingold, U.Jahnke, H.Orf, H.Rossner, W.P.Zank, W.U.Schroder, H.Gemmeke, K.Keller, L.Lassen, W.Lucking

Preequilibrium Neutron Emission in Fusion of 165Ho + 12C at 25 MeV per Nucleon

NUCLEAR REACTIONS 165Ho(12C, nX), E=300 MeV; measured σ(fragment θ, θn, En), neutron multiplicity; deduced neutron emission mechanism. Fermi-jet model.

doi: 10.1103/PhysRevC.33.143
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1986JA08      Phys.Rev.Lett. 57, 190 (1986)

U.Jahnke, G.Ingold, D.Hilscher, M.Lehmann, E.Schwinn, P.Zank

Violence of Heavy-Ion Reactions from Neutron Multiplicity: (11 to 20) A-MeV 20Ne + 238U

NUCLEAR REACTIONS 238U(20Ne, F), E=220, 290, 400 MeV; measured fission fragment spectra, σ(fragment θ, θn), (fragment)n-coin; deduced neutron multiplicity dependence on intrinsic excitation, linear momentum transfer.

doi: 10.1103/PhysRevLett.57.190
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1986ZA02      Phys.Rev. C33, 519 (1986)

W.P.Zank, D.Hilscher, G.Ingold, U.Jahnke, M.Lehmann, H.Rossner

Fusion-Fission Dynamics at High Excitation Energies Studied by Neutron Emission

NUCLEAR REACTIONS 141Pr(40Ar, nX), (40Ar, nF), E=316 MeV; 175Lu(12C, nX), (12C, nF), E=192 MeV; measured fission fragment, evaporation residue σ(θ), (fragment)n-coin; deduced fusion-fission dynamics, prescission, postscission neutron multiplicities.

doi: 10.1103/PhysRevC.33.519
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1985FU02      Phys.Rev. C31, 465 (1985)

H.Fuchs, M.Burgel, H.Homeyer, G.Ingold, U.Jahnke, G.Thoma

Production of Fast α Particles in 20Ne + 197Au Collisions Studied by Counting the Simultaneously Emitted Neutrons

NUCLEAR REACTIONS 197Au(20Ne, xnα), E=220, 290, 400 MeV; measured σ(Eα, θα) vs neutron multiplicity; deduced relative breakup, nonequilibrium α-emission σ.

doi: 10.1103/PhysRevC.31.465
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1983HO13      Phys.Rev. C28, 252 (1983)

E.Holub, D.Hilscher, G.Ingold, U.Jahnke, H.Orf, H.Rossner

Neutron Emission in Central Heavy-Ion Collisions of 165Ho + 20Ne at 11, 14.6, and 20.1 MeV/Nucleon

NUCLEAR REACTIONS 165Ho(20Ne, nX), E=220, 290, 402 MeV; measured σ(En, θn, fragment θ, fragment E); deduced prefission neutron multiplicity, multiple chance fission probability. Harp-Miller-Berne model.

doi: 10.1103/PhysRevC.28.252
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1983HO25      Z.Phys. A314, 143 (1983)

H.Homeyer, U.Jahnke, G.Ingold, M.Burgel, H.Fuchs, D.Hilscher

Two Different Sources of Fast Forward-Emitted α-Particles in Heavy-Ion Reactions

NUCLEAR REACTIONS 197Au(20Ne, αX), E=290 MeV; analyzed σ(Eα), αn-coin multiplicity distribution; deduced α-emission mechanisms, inelasticity dependences.

doi: 10.1007/BF01879872
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1983JA05      Phys.Rev.Lett. 50, 1246 (1983)

U.Jahnke, G.Ingold, H.Homeyer, M.Burgel, Ch.Egelhaaf, H.Fuchs, D.Hilscher

Neutron Multiplicity Distributions and the Role of Transfer and Breakup in Quasielastic Heavy-Ion Reactions at 15 MeV/Nucleon

NUCLEAR REACTIONS 197Au(20Ne, X), E=15 MeV/nucleon; measured σ(fragment E) for X=19Ne, 19F, 16O, 15N, 12C, neutron multiplicities; deduced reaction mechanism. Coincidence techniques, 4π neutron multiplicity counter.

doi: 10.1103/PhysRevLett.50.1246
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1983RO09      Phys.Rev. C27, 2666 (1983)

H.Rossner, D.Hilscher, E.Holub, G.Ingold, U.Jahnke, H.Orf, J.R.Huizenga, J.R.Birkelund, W.U.Schroder, W.W.Wilcke

Angular Distributions of Fragments from Fission Induced by 220-MeV 20Ne on Targets of 165Ho, 197Au, and 209Bi

NUCLEAR REACTIONS 165Ho, 197Au, 209Bi(20Ne, F), E=220 MeV; measured fission fragment σ(θ). 197Ir, 211Ac, 223Np, 175Re, 207Fr, 219Pa; deduced prefission multi-neutron induced angular momentum dealignment effect. Liquid drop, rotating liquid drop models, incomplete fusion, prefission particle emission mechanisms.

doi: 10.1103/PhysRevC.27.2666
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1982BO32      Z.Phys. A308, 121 (1982)

H.G.Bohlen, M.R.Clover, G.Ingold, H.Lettau, W.von Oertzen

Observation of the Nuclear Rainbow Scattering for 12C + 12C at E(lab) = 300 MeV

NUCLEAR REACTIONS 12C(12C, 12C), (12C, 12C'), E=300 MeV; measured σ(θ), σ(E(12C)); deduced optical model, quadrupole deformation parameters, nuclear rainbow scattering. Optical model, coupled-channels analyses, folded potential.

doi: 10.1007/BF01413002
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1679.


1982IN01      Z.Phys. A305, 135 (1982)

G.Ingold, H.G.Bohlen, M.Clover, H.Lettau, H.Ossenbrink, W.von Oertzen

Interaction of 80 MeV 12C with 88Sr; Neutron transfer, inelastic scattering and spin alignment of the 2+ state of 12C

NUCLEAR REACTIONS 88Sr(12C, 12C), (12C, 12C'), (12C, 13C), E=80 MeV; measured σ(θ), σ(E(12C)), σ(E(13C)): deduced optical model parameters. 12C level deduced spin alignment. 87Sr levels deduced L, C2S, configurations.

doi: 10.1007/BF01415021
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1678.


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