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Featured researches published by S. Hudan.


Physical Review C | 2003

Characteristics of the fragments produced in central collisions of129Xe+natSnfrom 32Ato 50AMeV

S. Hudan; A. Chbihi; J.D. Frankland; A. Mignon; J.P. Wieleczko; G. Auger; N. Bellaize; B. Borderie; A. Botvina; R. Bougault; B. Bouriquet; A. Buta; J. Colin; D. Cussol; R. Dayras; D. Durand; E. Galichet; D. Guinet; B. Guiot; G. Lanzalone; Lautesse; F. Lavaud; Lecolley; R. Legrain; Le Neindre; O. Lopez; L. Manduci; J. Marie; L. Nalpas; J. Normand

Characteristics of the primary fragments produced in central collisions of 129Xe + natSn from 32 to 50 AMeV have been obtained. By using the correlation technique for the relative velocity between light charged particles (LCP) and fragments, we were able to extract the multiplicities and average kinetic energy of secondary evaporated LCP. We then reconstructed the size and excitation energy of the primary fragments. For each bombarding energy a constant value of the excitation energy per nucleon over the whole range of fragment charge has been found. This value saturates at 3 AMeV for beam energies 39 AMeV and above. The corresponding secondary evaporated LCP represent less than 40% of all produced particles and decreases down to 23% for 50 AMeV. The experimental characteristics of the primary fragments are compared to the predictions of statistical multifragmentation model (SMM) calculations. Reasonable agreement between the data and the calculation has been found for any given incident energy. However SMM fails to reproduce the trend of the excitation function of the primary fragment excitation energy and the amount of secondary evaporated LCPs.


Physical Review Letters | 2010

Neutron-proton asymmetry dependence of spectroscopic factors in Ar isotopes

Jenny Lee; M. B. Tsang; D. Bazin; D. Coupland; Henzl; D. Henzlova; M. Kilburn; W. G. Lynch; A. M. Rogers; A. Sanetullaev; Angelo Signoracci; Zhi-Yu Sun; M. Youngs; K. Y. Chae; R. J. Charity; Hk Cheung; M. Famiano; S. Hudan; P.D. O'Malley; W. A. Peters; K.T. Schmitt; D. Shapira; L. G. Sobotka

Spectroscopic factors have been extracted for proton-rich 34Ar and neutron-rich 46Ar using the (p, d) neutron transfer reaction. The experimental results show little reduction of the ground state neutron spectroscopic factor of the proton-rich nucleus 34Ar compared to that of 46Ar. The results suggest that correlations, which generally reduce such spectroscopic factors, do not depend strongly on the neutron-proton asymmetry of the nucleus in this isotopic region as was reported in knockout reactions. The present results are consistent with results from systematic studies of transfer reactions but inconsistent with the trends observed in knockout reaction measurements.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2002

Response of CsI(Tl) scintillators over a large range in energy and atomic number of ions. Part I: recombination and δ-electrons

M. Pârlog; B. Borderie; M.F. Rivet; G. Tăbăcaru; A. Chbihi; M. Elouardi; N. Le Neindre; O. Lopez; E. Plagnol; L. Tassan-Got; G. Auger; Ch.O. Bacri; N. Bellaize; F. Bocage; R. Bougault; B. Bouriquet; R. Brou; P. Buchet; J.L. Charvet; J. Colin; D. Cussol; R. Dayras; A. Demeyer; D. Dore; D. Durand; J.D. Frankland; E. Galichet; E. Genouin-Duhamel; E. Gerlic; S. Hudan

Abstract A simple formalism describing the light response of CsI(Tl) to heavy ions, which quantifies the luminescence and the quenching in terms of the competition between radiative transitions following the carrier trapping at the Tl activator sites and the electron–hole recombination, is proposed. The effect of the δ-rays on the scintillation efficiency is for the first time quantitatively included in a fully consistent way. The light output expression depends on four parameters determined by a procedure of global fit to experimental data.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2002

Response of CsI(Tl) scintillators over a large range in energy and atomic number of ions (Part II): calibration and identification in the INDRA array

M. Pârlog; B. Borderie; M.F. Rivet; G. Tăbăcaru; A. Chbihi; M. Elouardi; N. Le Neindre; O. Lopez; E. Plagnol; L. Tassan-Got; G. Auger; Ch.O. Bacri; N. Bellaize; F. Bocage; R. Bougault; B. Bouriquet; R. Brou; P. Buchet; J.L. Charvet; J. Colin; D. Cussol; R. Dayras; A. Demeyer; D. Dore; D. Durand; J.D. Frankland; E. Galichet; E. Genouin-Duhamel; E. Gerlic; S. Hudan

Abstract The light output of the 324 CsI(Tl) scintillators of INDRA has been measured over large ranges in energy: 1– 80 AMeV and in atomic number of incident ions: Z =1–60. An analytical expression for the non-linear total light response as a function of the energy and the identity of the ion is developed. It depends on four parameters. For three of them, connected to CsI(Tl) intrinsic characteristics, fixed values are proposed. Two applications are presented: energy calibration and fragment identification in telescopes using a CsI(Tl) crystal as residual energy detector.


Physical Review C | 2003

Dynamical effects in multifragmentation at intermediate energies

Jeanett Mendoza Colin; D. Cussol; J. Normand; N. Bellaize; B. Borderie; R. Bougault; B. Bouriquet; A. Buta; J. L. Charvet; A. Chbihi; R. Dayras; Denys Durand; J.D. Frankland; E. Galichet; D. Guinet; B. Guiot; S. Hudan; P. Lautesse; F. Lavaud; N. Le Neindre; Oscar L. Lopez; L. Manduci; J. Marie; L. Nalpas; M. Pârlog; P. Pawłowski; E. Plagnol; M-F. Rivet; E. Rosato; R. Roy

The fragmentation of the quasi-projectile is studied with the INDRA multidetector for different colliding systems and incident energies in the Fermi energy range. Different experimental observations show that a large part of the fragmentation is not compatible with the statistical fragmentation of a fully equilibrated nucleus. The study of internal correlations is a powerful tool, especially to evidence entrance channel effects. These effects have to be included in the theoretical descriptions of nuclear multifragmentation.


Nuclear Physics | 2002

Multifragmentation process for different mass asymmetry in the entrance channel around the Fermi energy

N. Bellaize; O. Lopez; J.P. Wieleczko; D. Cussol; G. Auger; Ch.O. Bacri; F. Bocage; B. Borderie; R. Bougault; B. Bouriquet; R. Brou; P. Buchet; A. Buta; J.L. Charvet; A. Chbihi; J. Colin; R. Dayras; N. De Cesare; A. Demeyer; D. Dore; D. Durand; J.D. Frankland; E. Galichet; E. Genouin-Duhamel; E. Gerlic; B. Guiot; D. Guinet; S. Hudan; G. Lanzalone; P. Lautesse

Abstract The influence of the entrance channel mass asymmetry upon the fragmentation process is addressed by studying heavy-ion induced reactions around the Fermi energy. The data have been recorded with the INDRA 4 π array. An event selection method called the Principal Component Analysis is presented and discussed. It is applied for the selection of central events and furthermore to multifragmentation of single source events. The selected subsets of data are compared to the Statistical Multifragmentation Model (SMM) to check the equilibrium hypothesis and get the source characteristics. Experimental comparisons show the evidence of a decoupling between thermal and compressional (radial flow) component of the excitation energy stored in such nuclear systems.


Physical Review C | 2002

Compatibility of localized wave packets and unrestricted single particle dynamics for cluster formation in nuclear collisions

Akira Ono; S. Hudan; A. Chbihi; J.D. Frankland

Antisymmetrized molecular dynamics with quantum branching is generalized so as to allow finite time duration of the unrestricted coherent mean field propagation, which is followed by the decoherence into wave packets. In this new model, the wave packet shrinking by the mean field propagation is respected as well as the diffusion, so that it predicts a one-body dynamics similar to that in mean field models. The shrinking effect is expected to change the diffusion property of nucleons in nuclear matter and the global one-body dynamics. The central


Physical Review C | 2002

Fragment production in noncentral collisions of intermediate-energy heavy ions

B. Davin; R. Alfaro; Hu-Shan Xu; L. Beaulieu; Y. Larochelle; T. Lefort; R. Yanez; S. Hudan; Anne Leslie Caraley; R. T. de Souza; T. X. Liu; X. D. Liu; W. G. Lynch; R. Shomin; W. P. Tan; M. B. Tsang; A. M. Vander Molen; A. Wagner; H. Xi; C. K. Gelbke; R. J. Charity; L. G. Sobotka

{}^{129}\mathrm{Xe}+\mathrm{Sn}


Physical Review Letters | 2009

Mechanisms in Knockout Reactions

D. Bazin; R. J. Charity; R. T. de Souza; M. Famiano; A. Gade; V. Henzl; D. Henzlova; S. Hudan; Jenny Lee; S. M. Lukyanov; W. G. Lynch; S. McDaniel; M. Mocko; A. Obertelli; A. M. Rogers; L. G. Sobotka; J. R. Terry; J. A. Tostevin; M. B. Tsang; M. Wallace

collisions at 50 MeV/nucleon are calculated by the models with and without shrinking, and it is shown that the inclusion of the wave packet shrinking has a large effect on the multifragmentation in a big expanding system with a moderate expansion velocity.


Physical Review C | 2013

Confronting measured near- and sub-barrier fusion cross sections for

Romualdo deSouza; S. Hudan; V. E. Oberacker; A. S. Umar

The defining characteristics of fragment emission resulting from the non-central collision of 114Cd ions with 92Mo target nuclei at E/A = 50 MeV are presented. Charge correlations and average relative velocities for mid-velocity fragment emission exhibit significant differences when compared to standard statistical decay. These differences associated with similar velocity dissipation are indicative of the influence of the entrance channel dynamics on the fragment production process.

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A. Chbihi

Centre national de la recherche scientifique

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R. T. de Souza

Indiana University Bloomington

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W. G. Lynch

Michigan State University

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R. Bougault

Centre national de la recherche scientifique

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M. Famiano

Western Michigan University

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B. Borderie

Centre national de la recherche scientifique

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D. Durand

University of Paris-Sud

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J.D. Frankland

Centre national de la recherche scientifique

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