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NSR database version of April 11, 2024.

Search: Author = C.Casey

Found 6 matches.

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1990GE05      Phys.Rev. C41, 2878 (1990)

R.J.Gehrke, C.Casey, R.K.Murray

Half-Life of 176Lu

RADIOACTIVITY 176Lu(β-); measured T1/2, Iγ. 176Hf levels deduced γ-emission probabilities.

doi: 10.1103/PhysRevC.41.2878
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1990LO01      Phys.Rev. C41, 973 (1990)

W.Loveland, K.Aleklett, L.Sihver, Z.Xu, C.Casey, D.J.Morrissey, J.O.Liljenzin, M.de Saint-Simon, G.T.Seaborg

Changes in Target Fragmentation Mechanisms with Increasing Projectile Energy in Intermediate Energy Nuclear Collisions

NUCLEAR REACTIONS, ICPND 197Au(32S, X), E=512 MeV; 197Au(40Ar, X), E=1280, 1760 MeV; measured σ(fragment Z, A, θ); deduced fission σ(E), reaction mechanism, fragment isobaric yield distributions.

doi: 10.1103/PhysRevC.41.973
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1989CA18      Phys.Rev. C40, 1244 (1989)

C.Casey, W.Loveland, Z.Xu, L.Sihver, K.Aleklett, G.T.Seaborg

Nonequilibrium Fission and Heavy Residue Production in the Interaction of 12-16 MeV/Nucleon 32S with 165Ho

NUCLEAR REACTIONS 165Ho(32S, X), E=12-16 MeV/nucleon; measured σ(fragment Z, A, θ, E); deduced fragment production σ(A), σ(θ), fast nonequilibrium fission.

doi: 10.1103/PhysRevC.40.1244
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC2562.


1988LO10      Phys.Rev. C38, 2094 (1988)

W.Loveland, Z.Xu, C.Casey, K.Aleklett, J.O.Liljenzin, D.Lee, G.T.Seaborg

Total Projectile Kinetic Energy Scaling in Energetic Nucleus-Nucleus Collisions

NUCLEAR REACTIONS 197Au(139La, X), E=150 MeV/nucleon; measured σ(fragment Z, A); deduced σ(A). Total kinetic energy scaling, target fragmentation, intranuclear cascade model.

doi: 10.1103/PhysRevC.38.2094
Citations: PlumX Metrics


1987AL15      Fizika(Zagreb) 19, Supplement 1, 63 (1987)

K.Aleklett, W.Loveland, L.Sihver, Z.Xu, C.Casey, G.T.Seaborg

Formation of Large Residues in Intermediate Energy Nuclear Collisions

NUCLEAR REACTIONS 197Au(12C, X), (20Ne, X), (32S, X), (40Ar, X), (84Kr, X), (139La, X), E=intermediate; measured fragment yields, velocity spectra, σ(fragment θ); deduced fragment production mechanism.


1987LO14      Nucl.Phys. A471, 175c (1987)

W.Loveland, K.Aleklett, L.Sihver, Z.Xu, C.Casey, G.T.Seaborg

Formation of Large Target Residues in Intermediate Energy Nuclear Collisions

NUCLEAR REACTIONS 197Au(12C, X), E=35, 85 MeV/nucleon; 197Au(40Ar, X), E=32 MeV/nucleon; 197Au(84Kr, X), E=35 MeV/nucleon; 197Au(139La, X), E=150 MeV/nucleon; measured fragment isobaric yield distributions, σ(fragment θ(moving frame)) for X=99Mo, 131Ba, 171Lu, 58Co, 87Y, 146Gd; deduced fragment production mechanism. Boltzmann transport equation.

doi: 10.1016/0375-9474(87)90250-8
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