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NSR database version of April 26, 2024.

Search: Author = S.Heinrich

Found 2 matches.

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2015LE11      Phys.Rev. C 92, 034617 (2015)

J.-F.Lemaitre, S.Panebianco, J.-L.Sida, S.Hilaire, S.Heinrich

New statistical scission-point model to predict fission fragment observables

NUCLEAR REACTIONS 235U(n, F), E=thermal; calculated Coulomb energy and available energy as a function of the fragments deformation for fragment pairs (132Sn+104Mo), (118Pd+118Pd), maximum available energy as a function of the fragment proton and neutron numbers, fragment mass and charge yields, mean fragment deformation, fission fragment kinetic energy, and comparison with available data and ENDF/B-VII.1 data library. Z=85-92, N=118-142; calculated charge yields for the fission of light actinides, and compared to experimental data. Z=70-110, N=75-250 for compound nuclei; calculated peak multiplicity in the mass yields, and estimated mean prompt neutron multiplicity per fragment as a function of the compound nucleus for an excitation energy of 8 MeV. A new statistical scission-point yield (SPY) model. 132Sn, 104Mo, 118Pd; calculated potential energy as a function of deformation using liquid drop, HFB and shifted HFB models.

doi: 10.1103/PhysRevC.92.034617
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2004RA31      Nature(London) 431, 823 (2004)

R.Raabe, J.L.Sida, J.L.Charvet, N.Alamanos, C.Angulo, J.M.Casandjian, S.Courtin, A.Drouart, D.J.C.Durand, P.Figuera, A.Gillibert, S.Heinrich, C.Jouanne, V.Lapoux, A.Lepine-Szily, A.Musumarra, L.Nalpas, D.Pierroutsakou, M.Romoli, K.Rusek, M.Trotta

No enhancement of fusion probability by the neutron halo of 6He

NUCLEAR REACTIONS 238U(α, X), (6He, X), E(cm) ≈ 15-30 MeV; measured fission, fusion, and transfer σ; deduced no fusion enhancement from neutron halo.

doi: 10.1038/nature02984
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