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NSR database version of May 22, 2024.

Search: Author = D.Mercier

Found 9 matches.

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2012HU05      Phys.Rev. C 86, 021603 (2012)

S.Hudan, A.B.McIntosh, R.T.de Souza, S.Bianchin, J.Black, A.Chbihi, M.Famiano, M.O.Fregeau, J.Gauthier, D.Mercier, J.Moisan, C.J.Metelko, R.Roy, C.Schwarz, W.Trautmann, R.Yanez

Tracking saddle-to-scission dynamics using N/Z in projectile breakup reactions

NUCLEAR REACTIONS 112,124Sn(124Xe, X), (136Xe, X), E=50 MeV/nucleon; analyzed angular distribution of binary splits, isotopic composition of Z=4-8 fragments as a function of their decay angle, relative fragment velocity, and on time.

doi: 10.1103/PhysRevC.86.021603
Citations: PlumX Metrics


2012RU02      Phys.Rev. C 85, 024605 (2012)

M.J.Rudolph, Z.Q.Gosser, K.Brown, S.Hudan, R.T.de Souza, A.Chbihi, B.Jacquot, M.Famiano, J.F.Liang, D.Shapira, D.Mercier

Near- and sub-barrier fusion of 20O incident ions with 12C target nuclei

NUCLEAR REACTIONS 12C(20O, X), [20O secondary beam from C(22Ne, X), E=79 MeV/nucleon primary beam], E=19.8, 25.0, 41.0 MeV; measured particle spectra, time of flight, energy-TOF spectra, (particle)(particle)-coin, total fusion cross sections; deduced evaporation residue and light charged particle cross sections. 20O, 20F; measured energy spectrum. 12C(16O, X), E(cm)=8-17 MeV; measured particle spectra, total fusion cross sections. Comparison with statistical (EVAPOR) model predictions.

doi: 10.1103/PhysRevC.85.024605
Citations: PlumX Metrics


2010BO17      Nucl.Phys. A834, 535c (2010)

B.Borderie, E.Bonnet, F.Gulminelli, N.Le Neindre, D.Mercier, S.Piantelli, Ad.R.Raduta, M.F.Rivet, B.Tamain, R.Bougault, A.Chbihi, R.Dayras, J.D.Frankland, E.Galichet, F.Gagnon-Moisan, D.Guinet, P.Lautesse, J.Lukasik, M.Parlog, E.Rosato, R.Roy, M.Vigilante, J.P.Wieleczko, and the INDRA and ALADIN Collaboration

Multifragmentation and phase transition for hot nuclei: recent progress

doi: 10.1016/j.nuclphysa.2010.01.084
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2010MC03      Phys.Rev. C 81, 034603 (2010)

A.B.McIntosh, S.Hudan, J.Black, D.Mercier, C.J.Metelko, R.Yanez, R.T.de Souza, A.Chbihi, M.Famiano, M.O.Fregeau, J.Gauthier, J.Moisan, R.Roy, S.Bianchin, C.Schwarz, W.Trautmann

Short-lived binary splits of an excited projectile-like fragment induced by transient deformation

NUCLEAR REACTIONS 124Sn(124Xe, X), E=50 MeV/nucleon; measured isotopic yields, angular distributions, parallel velocity distribution of fragments, mass distributions in the binary breakup of an excited projectile-like fragment (PLF). Comparison with schematic one-dimensional Langevin model.

doi: 10.1103/PhysRevC.81.034603
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2009BO01      Nucl.Phys. A816, 1 (2009)

E.Bonnet, B.Borderie, N.Le Neindre, M.F.Rivet, R.Bougault, A.Chbihi, R.Dayras, J.D.Frankland, E.Galichet, F.Gagnon-Moisan, D.Guinet, P.Lautesse, J.Lukasik, D.Mercier, M.Parlog, E.Rosato, R.Roy, C.Sfienti, M.Vigilante, D.Mercier, M.Parlog, E.Rosato, R.Roy, C.Sfienti, M.Vigilante, J.P.Wieleczko, B.Zwieglinski, for the INDRA and ALADIN Collaborations

Fragment properties of fragmenting heavy nuclei produced in central and semi-peripheral collisions

NUCLEAR REACTIONS Sn(129Xe, X), E=25, 32, 39, 45, 50 MeV/nucleon; 197Au(197Au, X), E=80 MeV/nucleon; measured fragment charge- and velocity-distributions, charged-particle average energies using the INDRA detector; deduced radial collective energy, quasi-fragment and quasi-projectile properties.

doi: 10.1016/j.nuclphysa.2008.11.005
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2009BO19      Phys.Rev.Lett. 103, 072701 (2009)

E.Bonnet, D.Mercier, B.Borderie, F.Gulminelli, M.F.Rivet, B.Tamain, R.Bougault, A.Chbihi, R.Dayras, J.D.Frankland, E.Galichet, F.Gagnon-Moisan, D.Guinet, P.Lautesse, J.Lukasik, N.Le Neindre, M.Parlog, E.Rosato, R.Roy, M.Vigilante, J.P.Wieleczko, B.Zwieglinski, for the INDRA and ALADIN Collaborations

Bimodal Behavior of the Heaviest Fragment Distribution in Projectile Fragmentation

NUCLEAR REACTIONS 197Au(197Au, X), E=60, 80, 100 MeV/nucleon; measured charge distribution of reaction fragments; deduced bimodality in the decay pattern. INDRA apparatus.

doi: 10.1103/PhysRevLett.103.072701
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2009HU16      Phys.Rev. C 80, 064611 (2009)

S.Hudan, A.B.McIntosh, J.Black, D.Mercier, C.J.Metelko, R.Yanez, R.T.de Souza, A.Chbihi, M.Famiano, M.O.Fregeau, J.Gauthier, J.Moisan, R.Roy, S.Bianchin, C.Schwarz, W.Trautmann, A.S.Botvina

Charge correlations and isotopic distributions of projectile fragmentation events in 124Xe+112Sn at E/A=50 MeV

NUCLEAR REACTIONS 112Sn(124Xe, X), E=50 MeV/nucleon; measured fission fragments; deduced correlation function between heavy-light, heavy-medium fragments, Dalitz diagrams, and isotopic distributions for Z=4-14 symmetric ternary events. Comparison of measured charge correlations in fragmentation reactions with calculations using GEMINI code and statistical multifragmentation model (SMM).

doi: 10.1103/PhysRevC.80.064611
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2008PI02      Nucl.Phys. A809, 111 (2008)

S.Piantelli, B.Borderie, E.Bonnet, N.Le Neindre, Ad.R.Raduta, M.F.Rivet, R.Bougault, A.Chbihi, R.Dayras, J.D.Frankland, E.Galichet, F.Gagnon-Moisan, D.Guinet, P.Lautesse, G.Lehaut, O.Lopez, D.Mercier, J.Moisan, M.Parlog, E.Rosato, R.Roy, B.Tamain, E.Vient, M.Vigilante, J.P.Wieleczko, for the INDRA Collaboration

Freeze-out properties of multifragmentation events

NUCLEAR REACTIONS Sn(129Xe, X), E=32, 39, 45, 50 MeV/nucleon; analyzed fragment velocity distributions and charged-particle energy spectra; deduced freeze-out properties. Comparison with a microcanonical statistical model.

doi: 10.1016/j.nuclphysa.2008.06.004
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2007LE35      Nucl.Phys. A795, 47 (2007)

N.Le Neindre, E.Bonnet, J.P.Wieleczko, B.Borderie, F.Gulminelli, M.F.Rivet, R.Bougault, A.Chbihi, R.Dayras, J.D.Frankland, E.Galichet, D.Guinet, P.Lautesse, A.Le Fevre, O.Lopez, J.Lukasik, D.Mercier, J.Moisan, M.Parlog, E.Rosato, R.Roy, C.Schwarz, C.Sfienti, B.Tamain, W.Trautmann, A.Trzcinski, K.Turzo, E.Vient, M.Vigilante, B.Zwieglinski

Yield scaling, size hierarchy and fluctuations of observables in fragmentation of excited heavy nuclei

NUCLEAR REACTIONS Sn(Xe, X), E=32-50 MeV/nucleon; Au(Au, X), E=80 MeV/nucleon; measured fragment mass, charge and energy distributions. Fisher droplet model analysis and Zipf law applicability to cluster size discussed.

doi: 10.1016/j.nuclphysa.2007.08.011
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