NSR Query Results


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NSR database version of April 29, 2024.

Search: Author = J.Desbois

Found 5 matches.

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1988CE01      Nucl.Phys. A476, 74 (1988)

C.Cerruti, J.Desbois, R.Boisgard, C.Ngo, J.Natowitz, J.Nemeth

Multifragmentation and Incomplete Fusion in Central Heavy Ion Collisions within a Schematic Phenomenological Model

NUCLEAR REACTIONS 197Au(12C, X), (20Ne, X), (40Ar, X), E=10-80 MeV/nucleon; calculated emitted nucleon number per projectile nucleon characteristics. Schematic phenomenological model.

doi: 10.1016/0375-9474(88)90374-0
Citations: PlumX Metrics


1987DE12      Nucl.Phys. A466, 724 (1987)

J.Desbois

Heavy Ion Collisions and the Site-Bond Percolation

NUCLEAR REACTIONS Ag(p, X), E=300 GeV; Ag(C, X), E=1, 25 GeV; U(p, X), E=28 GeV; U(C, X), E=3, 12 GeV; U(Ne, X), E=20 GeV; calculated mass yield distributions. Au(p, X), E=0.49, 4.9, 1.0, 11.5 GeV; calculated mass yield distributions, spectra, mean momenta. Ag, Br(Ar, X), (O, X), (He, X), E=1.8, 2.1 GeV/nucleon; calculated fragment number distributions. Au, U, Th(Ar, X), E=27, 44 MeV/nucleon; calculated momentum transfer probability distributions. Ag(Ar, X), E=27, 35 MeV/nucleon; calculated velocity distributions.

doi: 10.1016/0375-9474(87)90464-7
Citations: PlumX Metrics


1987DE30      Z.Phys. A328, 101 (1987)

J.Desbois, R.Boisgard, C.Ngo, J.Nemeth

Multifragmentation of Excited Nuclei within a Schematic Hydrodynamical and Percolation Picture

NUCLEAR STRUCTURE 16O, 40,48Ca, 60Ni, 90Zr, 116Sn, 140Ce, 208Pb, 238U; calculated binding energy. 208Pb; calculated nucleon density time evolution. Hydrodynamical model, hot compressed nuclei.


1987NG04      J.Phys.(Paris), Colloq.C-2, 157 (1987)

C.Ngo, R.Boisgard, J.Desbois, J.Nemeth, M.Barranco

Multifragmentation of Nuclei

NUCLEAR STRUCTURE 208Pb; calculated multi-fragmentation instability, per nucleon excitation energy/binding energy, density vs radius. Irrotational hydrodynamical model.


1986NE04      Z.Phys. A325, 347 (1986)

J.Nemeth, M.Barranco, J.Desbois, C.Ngo

Multifragmentation of Hot and Compressed Nuclei within a Time Dependent Thomas Fermi and Percolation Model

NUCLEAR STRUCTURE 208Pb; calculated dynamical evolution, density profile, primary, secondary mass distribution, multifragmentation, normal de-excitation regions, maximum thermal excitation energy per nucleon; deduced hot compressed nuclei multifragmentation. Time dependent Thomas-Fermi, percolation models.


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