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NSR database version of April 11, 2024.

Search: Author = S.Yennello

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2023JE02      Phys.Rev. C 107, 024601 (2023)

A.Jedele, K.Hagel, M.Q.Sorensen, B.Harvey, A.Abbott, J.Gauthier, A.Hannaman, A.A.Hood, Y.-W.Lui, L.McCann, A.B.McIntosh, L.A.McIntosh, S.Schultz, Z.Tobin, R.Wada, M.Youngs, S.Yennello

Investigating the time dependence of neutron-proton equilibration using molecular dynamics simulations

NUCLEAR REACTIONS 70Zn(70Zn, X), E=35 MeV/nucleon; analyzed experimental yields from 2017RO09 (Phys. Rev. C 95, 044604) and and 2017JE01 (Phys. Rev. Lett. 118, 062501); deduced yields charge distributions and mass distribution for heavy and light fragments, fragments velocity distribution, angular distributions, neutron-to-proton ratio in the fragments. Simulations using Constrained Molecular Dynamics (COMD) and Antisymmetrized Molecular Dynamics (AMD) codes, which simulate the collision dynamics by solving time-dependent wave functions. GEMINI code used for de-excitation process.

doi: 10.1103/PhysRevC.107.024601
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2023MC01      Phys.Rev. C 107, 024612 (2023)

A.B.McIntosh, K.Hagel, L.A.McIntosh, R.Wada, J.Gauthier, P.J.Cammarata, A.Keeler, A.Abbott, A.Hannaman, B.Harvey, A.Jedele, Y.W.Lui, L.W.May, M.Sorensen, M.Youngs, A.Zarrella, S.J.Yennello

Apparent temperatures of neutron-poor and neutron-rich compound nuclei

NUCLEAR REACTIONS 12C(78Kr, X), (86Kr, X), E=15, 25, 35 MeV/nucleon; measured reaction products, fusion-evaporation residues, time-of-flight; deduced charged particles multiplicity, temperature of the reaction systems, Albergo temperature for p, d, t, α, 3He, 6He. Comparison to previous measurements and GEMINI++ calculations. QTS (quadrupole-triplet spectrometer) coupled to FAUST array of 68 Si-CsI(Tl)/PD telescopes at Texas AM University Cyclotron Institute.

doi: 10.1103/PhysRevC.107.024612
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2022JO04      Phys.Rev. C 106, L011603 (2022)

J.E.Johnstone, V.Singh, R.Giri, S.Hudan, J.Vadas, R.T.deSouza, D.Ackermann, A.Chbihi, Q.Hourdille, A.Abbott, C.Balhoff, A.Hannaman, A.B.McIntosh, M.Sorensen, Z.Tobin, A.Wakhle, S.J.Yennello, M.A.Famiano, K.W.Brown, C.Santamaria, J.Lubian, H.O.Soler, B.V.Carlson

Proton and neutron exchange as a prelude to fusion at near-barrier energies

NUCLEAR REACTIONS 39,41,45,47K(28Si, X), 36,44Ar(28Si, X), E(cm)=34-46 MeV; measured reaction products, evaporation residues; deduced fusion excitation functions, fusion σ(E), potential energy surfaces for binary fragments. Comparison to Dirac-Hartree-Bogoliubov (DHB) calculations for the ground state densities used in Sao Paulo fusion model. Radioactive beams of K and Ar ions were produced by the coupled cyclotron facility at MSU-NSCL and thermalized in a linear gas stopper before being reaccelerated by the ReA3 linac.

doi: 10.1103/PhysRevC.106.L011603
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2022MC03      Nuovo Cim. C 45, 47 (2022)

A.B.McIntosh, K.Hagel, L.A.McIntosh, S.J.Yennello

Temperatures of compound nuclei produced in complete and incomplete fusion and the role of neutron excess

NUCLEAR REACTIONS 12C(86Kr, X), E=35 MeV/nucleon; measured reaction products; deduced the role of neutron excess in the nuclear equation of state, symmetry dependence of nuclear caloric curve, temperature. The TAMU Cyclotron Institute.

doi: 10.1393/ncc/i2022-22047-2
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2021HU08      Chin.Phys.C 45, 024003 (2021)

M.Huang, A.Bonasera, S.Zhang, H.Zheng, D.X.Wang, J.C.Wang, N.Song, X.Tang, L.Lu, G.Zhang, Z.Kohley, M.R.D.Rodrigues, Y.G.Ma, S.J.Yennello

Four α correlations in nuclear fragmentation: a game of resonances

NUCLEAR REACTIONS 70Zn(70Zn, X), 64Zn(64Zn, X), 64Ni(64Ni, X), E=35 MeV/nucleon; measured reaction products, Eα, Iα. 4He; deduced yields, correlation functions, strong resonances among α-particles.

doi: 10.1088/1674-1137/abce52
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2021KA39      Phys.Lett. B 822, 136681 (2021)

M.Kaneko, T.Murakami, T.Isobe, M.Kurata-Nishimura, A.Ono, N.Ikeno, J.Barney, G.Cerizza, J.Estee, G.Jhang, J.W.Lee, W.G.Lynch, C.Santamaria, C.Y.Tsang, M.B.Tsang, R.Wang, D.S.Ahn, L.Atar, T.Aumann, H.Baba, K.Boretzky, J.Brzychczyk, N.Chiga, N.Fukuda, I.Gasparic, B.Hong, A.Horvat, T.Ichihara, K.Ieki, N.Inabe, Y.J.Kim, T.Kobayashi, Y.Kondo, P.Lasko, H.S.Lee, Y.Leifels, J.Lukasik, J.Manfredi, A.B.McIntosh, P.Morfouace, T.Nakamura, N.Nakatsuka, S.Nishimura, R.Olsen, H.Otsu, P.Pawlowski, K.Pelczar, D.Rossi, H.Sakurai, H.Sato, H.Scheit, R.Shane, Y.Shimizu, H.Simon, T.Sumikama, D.Suzuki, H.Suzuki, H.Takeda, S.Tangwancharoen, Y.Togano, H.Tornqvist, Z.Xiao, S.J.Yennello, J.Yurkon, Y.Zhang

Rapidity distributions of Z=1 isotopes and the nuclear symmetry energy from Sn+Sn collisions with radioactive beams at 270 MeV/nucleon

NUCLEAR REACTIONS 124Sn(132Sn, X), 112Sn(108Sn, X), E=270 MeV/nucleon; measured reaction products. 1,2,3H; deduced rapidity distributions of hydrogen isotopes emitted from central collisions. Comparison with antisymmetrized molecular dynamics (AMD) calculations. RIKEN-RIBF facility.

doi: 10.1016/j.physletb.2021.136681
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2021SI29      Phys.Rev. C 104, L041601 (2021)

V.Singh, J.E.Johnstone, R.Giri, S.Hudan, J.Vadas, R.T.deSouza, D.Ackermann, A.Chbihi, Q.Hourdille, A.Abbott, C.Balhoff, A.Hannaman, A.B.McIntosh, M.Sorensen, Z.Tobin, A.Wakhle, S.J.Yennello, M.A.Famiano, K.W.Brown, C.Santamaria, J.Lubian, H.O.Soler, B.V.Carlson

Impact of shell structure on the fusion of neutron-rich mid-mass nuclei

NUCLEAR REACTIONS 16O(39K, X), (41K, X), (45K, X), (47K, X), (36Ar, X), (44Ar, X), E(cm)=23-33 MeV, [secondary radioactive 45,47K, 44Ar beams from 9Be(48Ca, X), E=140 MeV/nucleon, followed by separation of ions using A1900 at NSCL-MSU facility]; measured reaction products, fusion σ(E); deduced reduced fusion excitation functions; investigated influence of shell effects on fusion of mid-mass nuclei. Comparison of experimental fusion cross sections with Sao Paulo model using Dirac-Hartree-Bogoliubov (DHB) densities, and densities from systematics; deduced over prediction of fusion experimental σ for closed-shell nuclei using DHB densities. 39,41,45,47K, 36,44Ar; predicted DHB density distributions of protons and neutrons. Relevance to importance of understanding shell effects at the saddle point for accurate description of fusion process.

doi: 10.1103/PhysRevC.104.L041601
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC2698.


2021WI13      Appl.Radiat.Isot. 178, 109935 (2021)

J.T.Wilkinson, K.E.Barrett, S.J.Ferran, S.R.McGuinness, L.A.McIntosh, M.McCarthy, S.J.Yennello, J.W.Engle, S.E.Lapi, G.F.Peaslee

A heavy-ion production channel of 149Tb via 63Cu bombardment of 89Y

NUCLEAR REACTIONS 89Y(63Cu, X)149Tb, E=258 MeV; measured reaction products, Eγ, Iγ. 148,149,150Tb, 73Se, 74,75,76,77Br, 76As, 76,77Kr, 84,85,86,87,90Y, 81Rb, 83Sr, 86Zr; deduced EOB thick target yields. Comparison with PACE4 calculations, available data.

doi: 10.1016/j.apradiso.2021.109935
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC2693.


2020HA11      Phys.Rev. C 101, 034605 (2020)

A.Hannaman, A.B.McIntosh, A.Jedele, A.Abbott, J.Gauthier, K.Hagel, B.Harvey, Z.Kohley, Y.Lui, L.A.McIntosh, A.Rodriguez Manso, M.Sorensen, Z.Tobin, R.Wada, M.Youngs, S.J.Yennello

Isoscaling and nuclear reaction dynamics

NUCLEAR REACTIONS 70Zn(70Zn, X), 64Zn(64Zn, X), E=35 MeV/nucleon; measured reaction products were measured using the Neutron Ion Multidetector for Reaction Oriented Dynamics (NIMROD), yields and angular distributions of fragments (Z=4 to 8, Z=12 and Z>12) at the K500 Cyclotron facility of Texas A and M University; deduced isoscaling parameters α and β as a function of breakup angle in binary excited projectile-like fragment decays. Comparison with statistical model calculations.

doi: 10.1103/PhysRevC.101.034605
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2020HA36      Phys.Rev. C 102, 064625 (2020)

B.Harvey, M.Youngs, A.B.McIntosh, A.Jedele, A.Abbott, J.Gauthier, K.Hagel, A.Hannaman, A.Hood, K.Krieble, Y.-W.Lui, L.A.McIntosh, A.Rodriguez Manso, M.Sorensen, Z.Tobin, R.Wada, A.Zarrella, S.J.Yennello

Correlation between time and angular alignment in molecular dynamics simulations of heavy ion collisions

NUCLEAR REACTIONS 70Zn(70Zn, X), E=35, 45 MeV/nucleon; analyzed yield of events as a function of impact parameter, angular alignment distributions, ratio of yields from the flipped peak to the dynamic peak as a function of the charge asymmetry of projectile-like fragments (PLF*) breakup, and angular alignment versus time using event tree method of analyzing molecular dynamics simulations, with constrained molecular dynamics (CoMD) model for accurate distributions of fragment masses and velocities.

doi: 10.1103/PhysRevC.102.064625
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2019MA72      Phys.Rev. C 100, 044612 (2019)

A.Rodriguez Manso, A.B.McIntosh, J.Gauthier, K.Hagel, L.Heilborn, A.Jedele, Z.Kohley, A.Wakhle, A.Zarrella, S.J.Yennello

Dynamical ternary decays of excited projectile-like fragments

NUCLEAR REACTIONS 70Zn(70Zn, X), E=35 MeV/nucleon; measured reaction products using 4π charged-particle array NIMROD at the K500 Cyclotron at Texas A and M University; deduced normalized yields of fragments as function of Z, Dalitz plot for fragment sizing correlation, normalized velocity distributions and normalized angular distributions of fragments for the different rupture scenarios, correlation between the angles of the first and second breaks for each rupture scenario, and angular correlation between the relative velocities of fragments; investigated neutron-proton equilibration in dynamically deformed nuclear systems by analyzing composition of fragments produced from the projectile-like fragments (PLF*) in semiperipheral collisions.

doi: 10.1103/PhysRevC.100.044612
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2019ZH17      Phys.Rev. C 99, 044605 (2019)

S.Zhang, A.Bonasera, M.Huang, H.Zheng, D.X.Wang, J.C.Wang, L.Lu, G.Zhang, Z.Kohley, Y.G.Ma, S.J.Yennello

Strongly resonating bosons in hot nuclei

NUCLEAR REACTIONS 64,70Zn(70Zn, X), (64Zn, X), 64Zn, 64Ni(64Zn, X), (64Ni, X), E=35 MeV/nucleon; analyzed experimental data from 4π NIMROD array at K150 cyclotron facility of Texas A and M University; deduced relative kinetic energy distribution of 2α events, excitation-energy distributions of 12C from 3α events, and 3Li from 3p events, probability ratios of direct-decay of 12C states into 3α particles of equal energies (DDE), and into a linear-decay (LD), probability ratios of decay of Hoyle state (HS) when 8Be g.s. energy is consistent with two α relative kinetic energies, or when the second largest energy is twice that of the 8Be g.s. energy. 8Be, 12C; discussed energy levels in hot nuclear matter, excitation of 12C states through multiresonance processes, and decay of 12C Hoyle state through 8Be.

doi: 10.1103/PhysRevC.99.044605
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2019ZH22      Chin.Phys.C 43, 064102 (2019)

S.Zhang, J.C.Wang, A.Bonasera, M.R.Huang, H.Zheng, G.Q.Zhang, Z.Kohley, Y.G.Ma, S.J.Yennello

Triple α-particle resonances in the decay of hot nuclear systems

NUCLEAR REACTIONS 70Zn(70Zn, X), 64Zn(64Zn, X)12C, E=35 MeV/nucleon; analyzed available data. 8Be; deduced 3α systems, relative energies, Efimov states.

doi: 10.1088/1674-1137/43/6/064102
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2018MA62      Phys.Rev. C 98, 044602 (2018)

L.W.May, A.Wakhle, A.B.McIntosh, Z.Kohley, S.Behling, A.Bonasera, G.Bonasera, P.Cammarata, K.Hagel, L.Heilborn, A.Jedele, A.Raphelt, A.Rodriguez Manso, G.Souliotis, R.Tripathi, M.D.Youngs, A.Zarrella, S.J.Yennello

Neutron-proton equilibration in 35 MeV/υ collisions of 64, 70Zn + 64, 70Zn and 64Zn, 64Ni + 64Zn, 64Ni quantified using triplicate probes

NUCLEAR REACTIONS 64,70Zn(70Zn, X), (64Zn, X), 64Zn, 64Ni(64Zn, X), (64Ni, X), E=35 MeV/nucleon; measured reaction products, isobaric yield ratios, isospin transport ratios of quasiparticle fragments using 4π NIMROD array for fragment detection at K150 cyclotron facility of Texas A and M University; deduced fractional neutron-proton equilibration width, quasiprojectile asymmetry, isoscaling parameter. Comparison with previous experimental data.

doi: 10.1103/PhysRevC.98.044602
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2018PA36      J.Phys.(London) G45, 095105 (2018)

A.Papageorgiou, G.A.Souliotis, K.Tshoo, S.C.Jeong, B.H.Kang, Y.K.Kwon, M.Veselsky, S.J.Yennello, A.Bonasera

Neutron-rich rare isotope production with stable and radioactive beams in the mass range A ∼ 40-60 at beam energy around 15 MeV/nucleon

NUCLEAR REACTIONS 64Ni, 238U(40Ar, X)Mg/Al/Si/P/S/Cl/Ar/K, E=15 MeV/nucleon; 64Ni, 238U(48Ca, X)Si/P/S/Cl/Ar/K/Ca/Sc, E=15 MeV/nucleon; 64Ni(40Ar, X), (46Ar, X)Mg/Al/Si/P/S/Cl/Ar/K, E=15 MeV/nucleon; 64Ni, 238U(46Ar, X)Mg/Al/Si/P/S/Cl/Ar/K, E=15 MeV/nucleon; 64Ni, 238U(54Ca, X)Si/P/S/Cl/Ar/K/Ca/Sc, E=15 MeV/nucleon; calculated yields. Comparison with available data.

doi: 10.1088/1361-6471/aad7df
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2018YE06      Nuovo Cim. C 41, 170 (2018)

S.Yennello

Isospin effects in nuclear reactions

NUCLEAR REACTIONS 64Ni(86Kr, X), 58Ni(78Kr, X), 70Zn(70Zn, X), 64Zn(64Zn, X), 64Ni(64Ni, X), E<8 MeV/nucleon; analyzed available data; deduced isospin effects.

doi: 10.1393/ncc/i2018-18170-0
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2017CA06      Prog.Part.Nucl.Phys. 94, 68 (2017)

J.Carlson, M.P.Carpenter, R.Casten, C.Elster, P.Fallon, A.Gade, C.Gross, G.Hagen, A.C.Hayes, D.W.Higinbotham, C.R.Howell, C.J.Horowitz, K.L.Jones, F.G.Kondev, S.Lapi, A.Macchiavelli, E.A.McCutchan, J.Natowitz, W.Nazarewicz, T.Papenbrock, S.Reddy, M.J.Savage, G.Savard, B.M.Sherrill, L.G.Sobotka, M.A.Stoyer, M.B.Tsang, K.Vetter, I.Wiedenhoever, A.H.Wuosmaa, S.Yennello

White paper on nuclear astrophysics and low-energy nuclear physics, Part 2: Low-energy nuclear physics

doi: 10.1016/j.ppnp.2016.11.002
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2017JE01      Phys.Rev.Lett. 118, 062501 (2017)

A.Jedele, A.B.McIntosh, K.Hagel, M.Huang, L.Heilborn, Z.Kohley, L.W.May, E.McCleskey, M.Youngs, A.Zarrella, S.J.Yennello

Characterizing Neutron-Proton Equilibration in Nuclear Reactions with Subzeptosecond Resolution

NUCLEAR REACTIONS 70Zn(70Zn, X), E=35 MeV/nucleon; measured reaction products, Eα, Iα; deduced fragment yields, neutron-proton equilibration. Comparison with available data.

doi: 10.1103/PhysRevLett.118.062501
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2017RO09      Phys.Rev. C 95, 044604 (2017)

A.Rodriguez Manso, A.B.McIntosh, A.Jedele, K.Hagel, L.Heilborn, Z.Kohley, L.W.May, A.Zarrella, S.J.Yennello

Detailed characterization of neutron-proton equilibration in dynamically deformed nuclear systems

NUCLEAR REACTIONS 70Zn(70Zn, X), 64Zn(64Zn, X), (64Ni, X), 64Ni(64Ni, X), E=35 MeV/nucleon; measured heavy fragment (HF) and light fragment (LF) using the NIMROD detector system at the K-500 cyclotron facility of Texas A and M; deduced normalized yields as functions of velocity, angular in-plane and out-of-plane distributions, average compositions as function of the decay alignment, rate constants as function of the atomic number, time dependence of neutron-proton equilibration in dynamically deformed nuclear systems. Comparison to a statistical model, and GEMINI++ simulations.

doi: 10.1103/PhysRevC.95.044604
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2017YO02      Nucl.Phys. A962, 61 (2017)

M.Youngs, A.B.McIntosh, K.Hagel, L.Heilborn, M.Huang, A.Jedele, Z.Kohley, L.W.May, E.McCleskey, A.Zarrella, S.J.Yennello

Observation of different isoscaling behavior between emitted fragments and residues

NUCLEAR REACTIONS 70Zn(70Zn, x), E=35 MeV/nucleon;76Zn(76Zn, x), E=35 MeV/nucleon; measured reaction products; deduced yield ratios vs energy of emitted particles for Z=5-12 and separately for fixed N-Z, slopes of the fit lines, isoscaling parameters for light particles and projectile-like fragments.

doi: 10.1016/j.nuclphysa.2017.03.005
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2016MA78      Phys.Rev. C 94, 064617 (2016)

J.Mabiala, H.Zheng, A.Bonasera, Z.Kohley, S.J.Yennello

Competition between fermions and bosons in nuclear matter at low densities and finite temperatures

NUCLEAR REACTIONS 64Zn(64Zn, X), 70Zn(70Zn, X), 64Ni(64Ni, X), E=35 MeV/nucleon; analyzed fragment free energy as a function of fragment's neutron proton asymmetry, temperatures, densities, free energies and mass fractions of protons, deuterons, and α emitted by the quasiprojectile (QP); extracted free energy (density) for fermions and bosons in finite nuclei at subsaturation densities and finite temperatures using the Landau free-energy technique.

doi: 10.1103/PhysRevC.94.064617
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2016RU03      Phys.Rev. C 94, 034608 (2016)

P.Russotto, S.Gannon, S.Kupny, P.Lasko, L.Acosta, M.Adamczyk, A.Al-Ajlan, M.Al-Garawi, S.Al-Homaidhi, F.Amorini, L.Auditore, T.Aumann, Y.Ayyad, Z.Basrak, J.Benlliure, M.Boisjoli, K.Boretzky, J.Brzychczyk, A.Budzanowski, C.Caesar, G.Cardella, P.Cammarata, Z.Chajecki, M.Chartier, A.Chbihi, M.Colonna, M.D.Cozma, B.Czech, E.De Filippo, M.Di Toro, M.Famiano, I.Gasparic, L.Grassi, C.Guazzoni, P.Guazzoni, M.Heil, L.Heilborn, R.Introzzi, T.Isobe, K.Kezzar, M.Kis, A.Krasznahorkay, N.Kurz, E.La Guidara, G.Lanzalone, A.Le Fevre, Y.Leifels, R.C.Lemmon, Q.F.Li, I.Lombardo, J.Lukasik, W.G.Lynch, P.Marini, Z.Matthews, L.May, T.Minniti, M.Mostazo, A.Pagano, E.V.Pagano, M.Papa, P.Pawlowski, S.Pirrone, G.Politi, F.Porto, W.Reviol, F.Riccio, F.Rizzo, E.Rosato, D.Rossi, S.Santoro, D.G.Sarantites, H.Simon, I.Skwirczynska, Z.Sosin, L.Stuhl, W.Trautmann, A.Trifiro, M.Trimarchi, M.B.Tsang, G.Verde, M.Veselsky, M.Vigilante, Y.Wang, A.Wieloch, P.Wigg, J.Winkelbauer, H.H.Wolter, P.Wu, S.Yennello, P.Zambon, L.Zetta, M.Zoric

Results of the ASY-EOS experiment at GSI: The symmetry energy at suprasaturation density

NUCLEAR REACTIONS 197Au(197Au, X), E=400 MeV/nucleon; measured directed and elliptic flow of neutrons and charged particles as a function of rapidity and transverse momentum in central and semi-central collisions using Large Area Neutron Detector (LAND), parts of CHIMERA multidetector, ALADIN Time-of-flight Wall, KRATTA telescopes, and Washington University Microball detector as part of ASY-EOS experimental campaign at GSI facility; deduced density dependence of nuclear symmetry energy, equation-of-state (EOS) of neutron-rich matter. Comparison with UrQMD transport model calculations.

doi: 10.1103/PhysRevC.94.034608
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2015MA46      Phys.Rev. C 92, 024605 (2015)

J.Mabiala, H.Zheng, A.Bonasera, P.Cammarata, K.Hagel, L.Heilborn, Z.Kohley, L.W.May, A.B.McIntosh, M.D.Youngs, A.Zarrella, S.J.Yennello

Novel technique to extract experimental symmetry free energy information for nuclear matter

NUCLEAR REACTIONS 64Zn(64Zn, X), 70Zn(70Zn, X), 64Ni(64Ni, X), E=35 MeV/nucleon; measured charged particles and free neutron spectra using 4π NIMROD-ISiS array at K-500 cyclotron facility of Texas A and M University; deduced symmetry free energy coefficient as a function of fragment's neutron-proton asymmetry, temperature and density. Data fitted with Landau's equations.

doi: 10.1103/PhysRevC.92.024605
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2014KO06      Eur.Phys.J. A 50, 31 (2014)

Z.Kohley, S.J.Yennello

Heavy-ion collisions: Direct and indirect probes of the density and temperature dependence of Esym

doi: 10.1140/epja/i2014-14031-0
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2014MA68      Phys.Rev. C 90, 027602 (2014)

J.Mabiala, H.Zheng, A.Bonasera, P.Cammarata, K.Hagel, L.Heilborn, Z.Kohley, L.W.May, A.B.McIntosh, M.D.Youngs, A.Zarrella, S.J.Yennello

Coulomb corrections to experimental temperatures and densities in Fermi-energy heavy-ion collisions

NUCLEAR REACTIONS 64Zn(64Zn, X), 70Zn(70Zn, X), 64Ni(64Ni, X), E=35 MeV/nucleon; measured charged particle and neutron spectra using the 4p NIMROD-ISiS array at Texas A-M cyclotron facility; deduced temperatures and densities as function of excitation energy per nucleon with and without Coulomb correction, and for different values of neutron-proton asymmetry, correlation between density and temperature.

doi: 10.1103/PhysRevC.90.027602
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2014MC02      Eur.Phys.J. A 50, 35 (2014)

A.B.McIntosh, J.Mabiala, A.Bonasera, P.Cammarata, K.Hagel, Z.Kohley, L.Heilborn, L.W.May, P.Marini, A.Raphelt, G.A.Souliotis, S.Wuenschel, A.Zarrella, H.Zheng, S.J.Yennello

How much cooler would it be with some more neutrons? - Exploring the asymmetry dependence of the nuclear caloric curve and the liquid-gas phase transition

NUCLEAR REACTIONS 64Ni(64Ni, X), E=35 MeV/nucleon;64Zn(64Zn, X), E=35 MeV/nucleon;70Zn(70Zn, X), E=35 MeV/nucleon; calculated temperature vs E*/mass using light charged particle emission (proton to 9Be) and three thermometer methods; deduced thermodynamic quantities.

doi: 10.1140/epja/i2014-14035-8
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2014SO20      Phys.Rev. C 90, 064612 (2014)

G.A.Souliotis, P.N.Fountas, M.Veselsky, S.Galanopoulos, Z.Kohley, A.McIntosh, S.J.Yennello, A.Bonasera

Isoscaling of heavy projectile residues and N/Z equilibration in peripheral heavy-ion collisions below the Fermi energy

NUCLEAR REACTIONS 58,64Ni, 112,124Sn(86Kr, X), E=15, 25 MeV/nucleon; 58,64Ni(40Ar, X), E=15, 25 MeV/nucleon; analyzed N/Z yield ratios of Z=26-39 fragments, TKEL, interaction time and N/Z versus TKEL, isoscaling parameter of heavy projectile residues. Stochastic nucleon-exchange deep inelastic transfer (DIT) model and the microscopic many-body constrained molecular dynamics (CoMD) model.

doi: 10.1103/PhysRevC.90.064612
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2014ST04      J.Phys.(London) G41, 025108 (2014)

B.C.Stein, A.Bonasera, G.A.Souliotis, H.Zheng, P.J.Cammarata, A.J.Echeverria, L.Heilborn, A.L.Keksis, Z.Kohley, J.Mabiala, P.Marini, L.W.May, A.B.McIntosh, C.Richers, D.V.Shetty, S.N.Soisson, R.Tripathi, S.Wuenschel, S.J.Yennello

Quantum suppression of fluctuations and temperatures of reconstructed A ∼ 30 quasi-projectiles

NUCLEAR REACTIONS 112Sn(32S, X)1H/3H/3He, E=45 MeV/nucleon; measured reaction products, Ep, Ip; deduced fragment multiplicities, proton temperature, energy density, supression of multiplicity fluctuations. Comparison with available data.

doi: 10.1088/0954-3899/41/2/025108
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2013BR05      Phys.Rev. C 87, 061601 (2013)

K.Brown, S.Hudan, R.T.deSouza, J.Gauthier, R.Roy, D.V.Shetty, G.A.Souliotis, S.J.Yennello

Timescale for equilibration of N/Z gradients in dinuclear systems

NUCLEAR REACTIONS 27Al, 64Zn, 209Bi(64Zn, X), E=45 MeV/nucleon; measured particle spectra, angular distributions of binary fragments at Texas AM facility;deduced average neutron to proton (N/Z) ratios for fragments as function of the decay angle, dependence of average neutron number on the parallel and transverse components of relative velocity, dependence of the average differential neutron number on time. Binary breakup of projectile-like fragment. Dinuclear complex.

doi: 10.1103/PhysRevC.87.061601
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2013MA06      Phys.Rev. C 87, 017603 (2013)

J.Mabiala, A.Bonasera, H.Zheng, A.B.McIntosh, L.W.May, P.Cammarata, Z.Kohley, K.Hagel, L.Heilborn, A.Raphelt, G.A.Souliotis, A.Zarrella, S.J.Yennello

Investigation of the nuclear phase transition using the Landau free-energy approach

NUCLEAR REACTIONS 64Zn(64Zn, X), 64Ni(64Ni, X), 70Zn(70Zn, X), E=35 MeV/nucleon; analyzed fragment yields, pairing coefficients for N=Z nuclei, temperature of quasiprojectile (QP) sources, dependence of nuclear equation of state on the proton and neutron concentration of the fragmenting system. Landau free-energy approach.

doi: 10.1103/PhysRevC.87.017603
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2013MA09      Phys.Rev. C 87, 024603 (2013)

P.Marini, A.Bonasera, G.A.Souliotis, P.Cammarata, S.Wuenschel, R.Tripathi, Z.Kohley, K.Hagel, L.Heilborn, J.Mabiala, L.W.May, A.B.McIntosh, S.J.Yennello

Systematic study of the symmetry energy within the approach of the statistical multifragmentation model

NUCLEAR REACTIONS 58Ni(78Kr, X), 64Ni(86Kr, X), E=35 MeV/nucleon; calculated symmetry energy coefficients, isoscaling and isobaric yield ratios of secondary fragments. Statistical multifragmentation model (SMM). Comparison with experimental data.

doi: 10.1103/PhysRevC.87.024603
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2013MC03      Phys.Rev. C 87, 034617 (2013)

A.B.McIntosh, A.Bonasera, Z.Kohley, P.J.Cammarata, K.Hagel, L.Heilborn, J.Mabiala, L.W.May, P.Marini, A.Raphelt, G.A.Souliotis, S.Wuenschel, A.Zarrella, S.J.Yennello

Using light charged particles to probe the asymmetry dependence of the nuclear caloric curve

NUCLEAR REACTIONS 70Zn(70Zn, X), 64Zn(64Zn, X), 64Ni(64Ni, X), E=35 MeV/nucleon; measured charged particle (proton, deuteron, triton, 3,4He), neutron spectra, momentum quadrupole fluctuation temperatures using NIMROD-ISiS 4π detector array at Texas AM; deduced caloric curves for light charged particles, Albergo yield ratio temperatures, dependence of nuclear temperatures on neutron-proton asymmetry. Momentum quadrupole fluctuation (MQF) thermometer.

doi: 10.1103/PhysRevC.87.034617
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2013RO21      Phys.Rev. C 88, 024609 (2013)

G.Ropke, S.Shlomo, A.Bonasera, J.B.Natowitz, S.J.Yennello, A.B.McIntosh, J.Mabiala, L.Qin, S.Kowalski, K.Hagel, M.Barbui, K.Schmidt, G.Giuliani, H.Zheng, S.Wuenschel

Density determinations in heavy ion collisions

doi: 10.1103/PhysRevC.88.024609
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2012KO22      Phys.Rev. C 85, 064605 (2012)

Z.Kohley, M.Colonna, A.Bonasera, L.W.May, S.Wuenschel, M.Di Toro, S.Galanopoulos, K.Hagel, M.Mehlman, W.B.Smith, G.A.Souliotis, S.N.Soisson, B.C.Stein, R.Tripathi, S.J.Yennello, M.Zielinska-Pfabe

Sensitivity of intermediate mass fragment flows to the symmetry energy

NUCLEAR REACTIONS 70Zn(70Zn, X), 64Zn(64Zn, X), 64Ni(64Ni, X), E=35 MeV/nucleon; measured charged particle and neutron spectra, and intermediate mass fragment transverse flow using NIMROD-ISiS array and 4π TAMU Neutron Ball at Texas AM. Comparison with Antisymmetrized molecular dynamics (AMD), constrained molecular dynamics (CoMD), and stochastic mean-field model (SFM) calculations. Sensitivity of the model to the nEoS.

doi: 10.1103/PhysRevC.85.064605
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2012KO33      Phys.Rev. C 86, 044605 (2012)

Z.Kohley, A.Bonasera, S.Galanopoulos, K.Hagel, L.W.May, A.B.McIntosh, B.C.Stein, G.A.Souliotis, R.Tripathi, S.Wuenschel, S.J.Yennello

Correlations with projectile-like fragments and emission order of light charged particles

NUCLEAR REACTIONS 70Zn(70Zn, X), 64Zn(64Zn, X), 64Ni(64Ni, X), E=35 MeV/nucleon; measured particle spectra, energy loss, total energy, mass fragment yield using 4π NIMROD-ISiS array at Texas A scaled rapidity. Comparison with Monte Carlo simulation. Classical molecular dynamics (CMD) model. Constrained molecular dynamics (CoMD) model calculations.

doi: 10.1103/PhysRevC.86.044605
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2012MA08      Phys.Rev. C 85, 034617 (2012)

P.Marini, A.Bonasera, A.McIntosh, R.Tripathi, S.Galanopoulos, K.Hagel, L.Heilborn, Z.Kohley, L.W.May, M.Mehlman, S.N.Soisson, G.A.Souliotis, D.V.Shetty, W.B.Smith, B.C.Stein, S.Wuenschel, S.J.Yennello

Constraining the symmetry term in the nuclear equation of state at subsaturation densities and finite temperatures

NUCLEAR REACTIONS 64Zn(64Zn, X), 70Zn(70Zn, X), 64Ni, (64Ni, X), E=35 MeV/nucleon; measured charged-particle spectra using 4π NIMROD-ISiS array and Neutron Ball at Texas A reconstructed quasiprojectile distributions; deduced isotopic and isobaric yield ratios, isoscaling parameter, symmetry energy (enthalpy) coefficient. isoscaling, m-scaling, and the isobaric yield ratio methods for analysis of data.

doi: 10.1103/PhysRevC.85.034617
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2012SO16      J.Phys.(London) G39, 115104 (2012)

S.N.Soisson, A.Botvina, G.A.Souliotis, B.C.Stein, L.Heilborn, A.L.Keksis, Z.Kohley, L.W.May, D.V.Shetty, S.Wuenschel, S.J.Yennello

Multifragmentation of reconstructed quasi-projectiles in the mass region A ∼ 30

NUCLEAR REACTIONS 112Sn(32S, X), E=45 MeV/nucleon; analyzed available data; calculated charge and mass distribution of fragments, N/Z, yield ratios. Statistical multifragmentation model, comparison with available data.

doi: 10.1088/0954-3899/39/11/115104
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2012TS04      Phys.Rev. C 86, 015803 (2012)

M.B.Tsang, J.R.Stone, F.Camera, P.Danielewicz, S.Gandolfi, K.Hebeler, C.J.Horowitz, J.Lee, W.G.Lynch, Z.Kohley, R.Lemmon, P.Moller, T.Murakami, S.Riordan, X.Roca-Maza, F.Sammarruca, A.W.Steiner, I.Vidana, S.J.Yennello

Constraints on the symmetry energy and neutron skins from experiments and theory

NUCLEAR STRUCTURE 208Pb; analyzed neutron-skin thickness, symmetry energy constraints. Contributions of three-body forces in neutron matter models.

doi: 10.1103/PhysRevC.86.015803
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2011KO17      Phys.Rev. C 83, 044601 (2011)

Z.Kohley, L.W.May, S.Wuenschel, M.Colonna, M.Di Toro, M.Zielinska-Pfabe, K.Hagel, R.Tripathi, A.Bonasera, G.A.Souliotis, D.V.Shetty, S.Galanopoulos, M.Mehlman, W.B.Smith, S.N.Soisson, B.C.Stein, S.J.Yennello

Transverse collective flow and midrapidity emission of isotopically identified light charged particles

NUCLEAR REACTIONS 64Ni(64Ni, X), 64Zn(64Zn, X), 70Zn(70Zn, X), E=35 MeV/nucleon; measured particle spectra and yields of light-charged particles (ZA=1-12) using 4π NIMROD-ISiS array; deduced rapidity distribution, transverse flow and average in-plane momentum. Comparison with stochastic mean-field (SMF) model.

doi: 10.1103/PhysRevC.83.044601
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2011KO62      J.Phys.:Conf.Ser. 312, 082030 (2011)

Z.Kohley, L.W.May, S.Wuenschel, A.Bonasera, K.Hagel, R.Tripathi, R.Wada, G.A.Souliotis, D.V.Shetty, S.Galanopoulos, M.Mehlman, W.B.Smith, S.N.Soisson, B.C.Stein, S.J.Yennello

Intermediate Mass Fragment Flow as a Probe to the Nuclear Equation of State

NUCLEAR REACTIONS 64Ni(64Ni, X), E=35 MeV/nucleon;64Zn(64Zn, X), E=35 MeV/nucleon;70Zn(70Zn, X), E=35 MeV/nucleon; measured En, In(θ), E(fragment), I(fragment, θ), Z(fragment); deduced intermediate-mass fragments transverse flow using AMD with soft and stiff symmetry energy. Compared to data.

doi: 10.1088/1742-6596/312/4/082030
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2011SO33      Phys.Rev. C 84, 064607 (2011)

G.A.Souliotis, M.Veselsky, S.Galanopoulos, M.Jandel, Z.Kohley, L.W.May, D.V.Shetty, B.C.Stein, S.J.Yennello

Approaching neutron-rich nuclei toward the r-process path in peripheral heavy-ion collisions at 15 MeV/nucleon

NUCLEAR REACTIONS 58,64Ni, 112,124Sn(86Kr, X), E=15 MeV/nucleon; measured fragment spectra, cross sections at two angles as function of mass number and charge, production σ. Momentum achromat recoil separator (MARS). Comparison with deep-inelastic transfer model (DIT/GEMINI), and microscopic constrained molecular dynamics model (CoMD) calculations for isobaric distributions of fragments. Comparison with previous results. 64Ni(86Kr, X)90Kr/91Kr/92Kr/93Kr/87Br/88Br/89Br/90Br/91Br/84Se/85Se/86Se/87Se/88Se/83As/84As/85As/86As/87As/82Ge/83Ge/84Ge, E=15 MeV/nucleon; estimated production cross section and rate. Astrophysical relevance for r process.

doi: 10.1103/PhysRevC.84.064607
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC1901.


2011TR03      Phys.Rev. C 83, 054609 (2011)

R.Tripathi, A.Bonasera, S.Wuenschel, L.W.May, Z.Kohley, G.A.Souliotis, S.Galanopoulos, K.Hagel, D.V.Shetty, K.Huseman, S.N.Soisson, B.C.Stein, S.J.Yennello

Analysis of fragment yield ratios in the nuclear phase transition

NUCLEAR REACTIONS 58,64Ni(78Kr, X), (86Kr, X), E=35 MeV/nucleon; measured fragment yield ratios; analyzed data using the Landau free energy approach. Nuclear liquid-gas phase transition.

doi: 10.1103/PhysRevC.83.054609
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2011TR10      J.Phys.:Conf.Ser. 312, 082043 (2011)

R.Tripathi, A.Bonasera, S.Wuenschel, L.W.May, Z.Kohley, G.A.Souliotis, S.Galanopoulos, K.Hagel, D.V.Shetty, K.Huseman, S.N.Soisson, B.C.Stein, S.J.Yennello

Investigation of critical behaviour from nuclear fragment yield ratios

NUCLEAR REACTIONS 58,64Ni(78Kr, X), (86Kr, X), E=35 MeV/nucleon; measured charged particles using NIMROD-ISiS, En, In using neutron ball; deduced yields vs isospin asymmetry, symmetry energy coefficient vs excitation energy.

doi: 10.1088/1742-6596/312/4/082043
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2010GA13      Nucl.Phys. A837, 145 (2010)

S.Galanopoulos, G.A.Souliotis, A.L.Keksis, M.Veselsky, Z.Kohley, L.W.May, D.V.Shetty, S.N.Soisson, B.C.Stein, S.Wuenschel, S.J.Yennello

Isoscaling of mass A ≈ 40 reconstructed quasiprojectiles from collisions in the Fermi energy regime

NUCLEAR REACTIONS 112,124Sn(40Ar, X), (40Ca, X), E=45 MeV/nucleon; measured light fragment yields, energy spectra, (fragment)(fragment)-coin using FAUST array; analyzed isoscaling behaviour versus neutron number and excitation energy, including correction for neutron loss.

doi: 10.1016/j.nuclphysa.2010.01.248
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2010KE03      Phys.Rev. C 81, 054602 (2010)

A.L.Keksis, L.W.May, G.A.Souliotis, M.Veselsky, S.Galanopoulos, Z.Kohley, D.V.Shetty, S.N.Soisson, B.C.Stein, R.Tripathi, S.Wuenschel, S.J.Yennello, B.A.Li

Experimental studies of N/Z equilibration in peripheral collisions using fragment yield ratios

NUCLEAR REACTIONS 112Sn, 124Sn(40Ca, X), 112Sn, 124Sn(48Ca, X), E=32 MeV; measured fragment spectra; deduced quasiprojectile N/Z ratio. Comparison with deep-inelastic transfer (DIT) code, statistical multifragmentation model (SMM), and isospin-dependent Boltzmann-Uehling-Uhlenbeck (IBUU) microscopic transport model.

doi: 10.1103/PhysRevC.81.054602
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2010KO37      Phys.Rev. C 82, 064601 (2010)

Z.Kohley, L.W.May, S.Wuenschel, A.Bonasera, K.Hagel, R.Tripathi, R.Wada, G.A.Souliotis, D.V.Shetty, S.Galanopoulos, M.Mehlman, W.B.Smith, S.N.Soisson, B.C.Stein, S.J.Yennello

Investigation of transverse collective flow of intermediate mass fragments

NUCLEAR REACTIONS 64Ni(64Ni, X), 64Zn(64Zn, X), 70Zn(70Zn, X), E=35 MeV/nucleon; measured particle spectra, angular distributions, transverse flow of Z=1-9 fragments. Dependence of transverse flow of the intermediate mass fragments (IMF) on mass and charge of the colliding systems. Probe of nuclear equation of state.

doi: 10.1103/PhysRevC.82.064601
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2010SH19      Pramana 75, 259 (2010)

D.V.Shetty, S.J.Yennello

Nuclear symmetry energy: An experimental overview

doi: 10.1007/s12043-010-0114-8
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2010VE02      Nucl.Phys. A837, 163 (2010)

M.Veselsky, G.A.Souliotis, A.L.Keksis, M.Jandel, D.V.Shetty, S.J.Yennello, K.Wang, Y.G.Ma

Statistical and dynamical aspects in the decay of hot neutron-rich nuclei

NUCLEAR REACTIONS 27Al(40Ca, X), (48Ca, X), E=45 MeV/nucleon; measured projectile-like fragment charge and mass distributions, light-particle velocity distributions and composite system excitation energies for incomplete fusion using FAUST array; deduced thermodynamical properties, isoscaling, effect of missing neutrons.

doi: 10.1016/j.nuclphysa.2010.02.013
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2010VE05      Int.J.Mod.Phys. E19, 1559 (2010)

M.Veselsky, G.A.Souliotis, A.L.Keksis, D.V.Shetty, M.Jandel, S.J.Yennello, K.Wang, Y.G.Ma

Statistical and dynamical aspects in the decay of hot neutron-rich nuclei

doi: 10.1142/S0218301310015965
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2010WU07      Nucl.Phys. A843, 1 (2010)

S.Wuenschel, A.Bonasera, L.W.May, G.A.Souliotis, R.Tripathi, S.Galanopoulos, Z.Kohley, K.Hagel, D.V.Shetty, K.Huseman, S.N.Soisson, B.C.Stein, S.J.Yennello

Measuring the temperature of hot nuclear fragments

NUCLEAR REACTIONS 64Ni(86Kr, X), 58Ni(78Kr, X), E=35 MeV/nucleon; measured fragment mass and charge yields, fragment energy spectra; deduced system temperature from fragment momenta. NIMROD ISiS array.

doi: 10.1016/j.nuclphysa.2010.04.013
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2009SH11      Phys.Rev. C 79, 034603 (2009)

D.V.Shetty, G.A.Souliotis, S.Galanopoulos, S.J.Yennello

Effective nucleon mass and the nuclear caloric curve

NUCLEAR STRUCTURE A=30-240; calculated effective nucleon mass ratios, density, temperature as functions of excitation energy. Comparison with experimental data.

doi: 10.1103/PhysRevC.79.034603
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2009SH20      J.Phys.(London) G36, 075103 (2009)

D.V.Shetty, G.A.Souliotis, S.Galanopoulos, Z.Kohley, S.N.Soisson, B.C.Stein, S.Wuenschel, S.J.Yennello

Nuclear expansion and symmetry energy of hot nuclei

NUCLEAR REACTIONS 58Ni(58Ni, X), 58Fe(58Ni, X), 58Fe(58Fe, X), E=30, 40, 47 MeV/nucleon; Analyzed excitation energy dependence on symmetry energy; Deduced decreasing density effects. Thomas-Fermi approach.

doi: 10.1088/0954-3899/36/7/075103
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2009SO05      Nucl.Instrum.Methods Phys.Res. B266, 4692 (2009)

G.A.Souliotis, B.Stein, M.Veselsky, S.Galanopoulos, A.L.Keksis, Z.Kohley, D.V.Shetty, S.N.Soisson, S.Wuenschel, S.J.Yennello

Neutron-rich rare isotope production in the Fermi energy domain and application to the Texas A and M radioactive beam upgrade

doi: 10.1016/j.nimb.2008.05.118
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2009WU03      Phys.Rev. C 79, 061602 (2009)

S.Wuenschel, R.Dienhoffer, G.A.Souliotis, S.Galanopoulos, Z.Kohley, K.Hagel, D.V.Shetty, K.Huseman, L.W.May, S.N.Soisson, B.C.Stein, A.L.Caraley, S.J.Yennello

Isoscaling of fragments with Z = 1-17 from reconstructed quasiprojectiles

NUCLEAR REACTIONS 64Ni(86Kr, X), 58Ni(78Kr, X), E=35 MeV/nucleon; measured particle spectra, isotopic yield ratios, N/Z ratio of quasiprojectiles, and S(N); deduced isoscaling parameters for Z=1-17 fragments.

doi: 10.1103/PhysRevC.79.061602
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2009WU04      Nucl.Instrum.Methods Phys.Res. A604, 578 (2009)

S.Wuenschel, K.Hagel, R.Wada, J.B.Natowitz, S.J.Yennello, Z.Kohley, C.Bottosso, L.W.May, W.B.Smith, D.V.Shetty, B.C.Stein, S.N.Soisson, G.Prete

NIMROD-ISiS, a versatile tool for studying the isotopic degree of freedom in heavy ion collisions

doi: 10.1016/j.nima.2009.03.187
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2007SH11      Phys.Rev. C 75, 034602 (2007)

D.V.Shetty, S.J.Yennello, G.A.Souliotis

Density dependence of the symmetry energy and the equation of state of isospin asymmetric nuclear matter

NUCLEAR REACTIONS 58Fe, 58Ni(40Ar, X), (40Ca, X), (58Fe, X), (58Ni, X), E=25-53 MeV/nucleon; analyzed fragment yields, related data; deduced isoscaling parameter, density dependence of symmetry energy. Dynamical model.

doi: 10.1103/PhysRevC.75.034602
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2007SH22      Nucl.Instrum.Methods Phys.Res. B261, 990 (2007)

D.V.Shetty, S.J.Yennello, G.A.Souliotis

Constraining the density dependence of the symmetry energy in the nuclear equation of state using heavy ion beams

doi: 10.1016/j.nimb.2007.04.138
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2007SH29      Phys.Rev. C 76, 024606 (2007);Pub.note Phys.Rev. C 76, 039902 (2007)

D.V.Shetty, S.J.Yennello, G.A.Souliotis

Density dependence of the symmetry energy and the nuclear equation of state: A dynamical and statistical model perspective

NUCLEAR REACTIONS 58Fe, 58Ni(40Ar, X), E=25, 33 meV/nucleon; 58Fe, 58Ni(40Ca, X), E=45, 53 MeV/nucleon; 58Fe, 58Ni(58Fe, X), (58Ni, X), E=30, 40, 47 MeV/nucleon; measured fragment yields and isotopic distributions. Compared results to model calculations.

doi: 10.1103/PhysRevC.76.024606
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2007SO02      Phys.Rev. C 75, 011601 (2007)

G.A.Souliotis, A.S.Botvina, D.V.Shetty, A.L.Keksis, M.Jandel, M.Veselsky, S.J.Yennello

Tracing the evolution of the symmetry energy of hot nuclear fragments from the compound nucleus towards multifragmentation

NUCLEAR REACTIONS 64Ni(64Ni, X), 64Ni, 124Sn, 208Pb(86Kr, X), E=25 MeV/nucleon; analyzed fragments isotopic yields, mass distributions; deduced symmetry energy features.

doi: 10.1103/PhysRevC.75.011601
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC1519.


2007SO12      Nucl.Instrum.Methods Phys.Res. B261, 996 (2007)

G.A.Souliotis, A.S.Botvina, D.V.Shetty, A.L.Keksis, M.Jandel, M.Veselsky, S.J.Yennello

Properties of hot nuclear fragments formed in multifragmentation and their astrophysical implications

NUCLEAR REACTIONS 64Ni, 124Sn, 208Pb(86Kr, X), 64Ni(64Ni, X), E=25 MeV/nucleon; measured fragment energies and time of flight. Deduced fragmentation cross sections.

doi: 10.1016/j.nimb.2007.04.185
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2007SO19      Nucl.Instrum.Methods Phys.Res. B261, 1094 (2007)

G.A.Souliotis, A.L.Keksis, B.C.Stein, M.Veselsky, M.Jandel, D.V.Shetty, S.N.Soisson, S.Wuenschel, S.J.Yennello

Rare isotope production in the Fermi energy regime and application to the Texas A

doi: 10.1016/j.nimb.2007.04.184
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2007WA02      Phys.Rev. C 75, 014604 (2007)

J.Wang, T.Keutgen, R.Wada, K.Hagel, S.Kowalski, T.Materna, L.Qin, Z.Chen, J.B.Natowitz, Y.G.Ma, M.Murray, A.Keksis, E.Martin, A.Ruangma, D.V.Shetty, G.Souliotis, M.Veselsky, E.M.Winchester, S.J.Yennello, D.Fabris, M.Lunardon, S.Moretto, G.Nebbia, S.Pesente, V.Rizzi, G.Viesti, M.Cinausero, G.Prete, J.Cibor, Z.Majka, P.Staszel, W.Zipper, Y.El Masri, R.Alfaro, A.Martinez-Davalos, A.Menchaca-Rocha, A.Ono

Properties of the initial participant matter interaction zone in near-Fermi-energy heavy-ion collisions

NUCLEAR REACTIONS 112Sn(40Ar, X), E=40 MeV/nucleon; 124Sn(27Al, X), E=55 MeV/nucleon; measured light charged particle and neutron spectra, multiplicities, yield ratios; deduced source features.

doi: 10.1103/PhysRevC.75.014604
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2006DI15      Eur.Phys.J. A 30, 153 (2006)

M.Di Toro, S.J.Yennello, B.-A.Li

Isospin flows

doi: 10.1140/epja/i2006-10113-x
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2006GU24      Eur.Phys.J. A 30, 1 (2006)

F.Gulminelli, W.Trautmann, S.J.Yennello, Ph.Chomaz

Challenges in nuclear dynamics and thermodynamics

doi: 10.1140/epja/i2006-10128-3
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2006IG02      Phys.Rev. C 74, 024605 (2006)

J.Iglio, D.V.Shetty, S.J.Yennello, G.A.Souliotis, M.Jandel, A.L.Keksis, S.N.Soisson, B.C.Stein, S.Wuenschel, A.S.Botvina

Symmetry energy and the isoscaling properties of the fragments produced in 40Ar, 40Ca + 58Fe, 58Ni reactions at 25, 33, 45, and 53 MeV/nucleon

NUCLEAR REACTIONS 58Ni, 58Fe(40Ar, X), (40Ca, X), E=25, 33, 45, 53 MeV/nucleon; measured fragments isotopic yields; deduced symmetry energies, isoscaling properties. Statistical multifragmentation model.

doi: 10.1103/PhysRevC.74.024605
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2006JA20      Phys.Rev. C 74, 054608 (2006)

M.Jandel, S.Wuenschel, D.V.Shetty, G.A.Souliotis, A.L.Keksis, S.J.Yennello, M.Veselsky

Signatures of critical behavior in the multifragmentation of nuclei with charge Z = 12-15 and the N/Z dependence

NUCLEAR REACTIONS 112,124Sn(28Si, X), E=30, 50 MeV/nucleon; measured projectile-like fragments charge and mass distributions, excitation energies; deduced power-law parameters.

doi: 10.1103/PhysRevC.74.054608
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2006SO02      Phys.Rev. C 73, 024606 (2006)

G.A.Souliotis, D.V.Shetty, A.Keksis, E.Bell, M.Jandel, M.Veselsky, S.J.Yennello

Heavy-residue isoscaling as a probe of the symmetry energy of hot fragments

NUCLEAR REACTIONS 58,64Ni, 112,124Sn(86Kr, X), E=25 MeV/nucleon; 58,64Ni, 112,124Sn, 208Pb, 232Th(64Ni, X), E=25 MeV/nucleon; 58,64Ni, 112,124Sn, 197Au, 232Th(136Xe, X), E=20 MeV/nucleon; measured fragments isotopic yields; deduced isoscaling parameters, symmetry energy features.

doi: 10.1103/PhysRevC.73.024606
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2006TH11      Phys.Rev. C 74, 051602 (2006)

D.Theriault, J.Gauthier, F.Grenier, F.Moisan, C.St-Pierre, R.Roy, B.Davin, S.Hudan, T.Paduszynski, R.T.de Souza, E.Bell, J.Garey, J.Iglio, A.L.Keksis, S.Parketon, C.Richers, D.V.Shetty, S.N.Soisson, G.A.Souliotis, B.C.Stein, S.J.Yennello

Neutron-to-proton ratios of quasiprojectile and midrapidity emission in the 64Zn + 64Zn reaction at 45 MeV/nucleon

NUCLEAR REACTIONS 64Zn(64Zn, X), E=45 MeV/nucleon; measured charged particle and neutron spectra, σ(Eθ); deduced rapidity dependence of neutron-to-proton ratios, related features.

doi: 10.1103/PhysRevC.74.051602
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2006VI01      Phys.Lett. B 637, 176 (2006)

V.E.Viola, K.Kwiatkowski, S.J.Yennello, J.B.Natowitz

Comment on breakup densities of hot nuclei

NUCLEAR REACTIONS 197Au(α, X), E=200 MeV; 197Au(14N, X), E=20-100 MeV/nucleon; 197Au(3He, X), E=4.8 GeV; 197Au(π-, X), E at 8 GeV/c; analyzed intermediate mass fragment multiplicities; deduced breakup densities.

doi: 10.1016/j.physletb.2006.04.034
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2006VI07      Phys.Rep. 434, 1 (2006)

V.E.Viola, K.Kwiatkowski, L.Beaulieu, D.S.Bracken, H.Breuer, J.Brzychczyk, R.T.de Souza, D.S.Ginger, W.-C.Hsi, R.G.Korteling, T.Lefort, W.G.Lynch, K.B.Morley, R.Legrain, L.Pienkowski, E.C.Pollacco, E.Renshaw, A.Ruangma, M.B.Tsang, C.Volant, G.Wang, S.J.Yennello, N.R.Yoder

Light ion-induced multifragmentation: The ISiS project

NUCLEAR REACTIONS 197Au(p, X), (p-bar, X), (π-, X), E at 5-15 GeV/c; Ag, 197Au(3He, X), E=2-5 GeV; measured fragment energies, yields, multiplicity, charge, and angular distributions; deduced phase transition features.

doi: 10.1016/j.physrep.2006.07.005
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2005JA01      J.Phys.(London) G31, 29 (2005)

M.Jandel, A.S.Botvina, S.J.Yennello, G.A.Souliotis, D.V.Shetty, E.Bell, A.Keksis

The decay time scale for highly excited nuclei as seen from asymmetrical emission of particles

NUCLEAR REACTIONS 112Sn(28Si, X), E=50 MeV/nucleon; analyzed α-spectra, anisotropy; deduced fragments decay time scale features.

doi: 10.1088/0954-3899/31/1/003
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2005MA14      Nucl.Phys. A749, 106c (2005)

Y.G.Ma, J.B.Natowitz, R.Wada, K.Hagel, J.Wang, T.Keutgen, Z.Majka, M.Murray, L.Qin, P.Smith, R.Alfaro, J.Cibor, M.Cinausero, Y.El Masri, D.Fabris, E.Fioretto, A.Keksis, M.Lunardon, A.Makeev, N.Marie, E.Martin, A.Martinez-Davalos, A.Menchaca-Rocha, G.Nebbia, G.Prete, V.Rizzi, A.Ruangma, D.V.Shetty, G.Souliotis, P.Staszel, M.Veselsky, G.Viesti, E.M.Winchester, S.J.Yennello

Towards the critical behavior for the light nuclei by NIMROD detector

NUCLEAR REACTIONS 58Ni(40Ar, X), E=47 MeV/nucleon; measured light charged particle and intermediate mass fragments charge and energy distributions; deduced phase transition features. Fisher droplet model and Zipf's law analysis.

doi: 10.1016/j.nuclphysa.2004.12.015
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2005MA32      Phys.Rev. C 71, 054606 (2005)

Y.G.Ma, J.B.Natowitz, R.Wada, K.Hagel, J.Wang, T.Keutgen, Z.Majka, M.Murray, L.Qin, P.Smith, R.Alfaro, J.Cibor, M.Cinausero, Y.El Masri, D.Fabris, E.Fioretto, A.Keksis, M.Lunardon, A.Makeev, N.Marie, E.Martin, A.Martinez-Davalos, A.Menchaca-Rocha, G.Nebbia, G.Prete, V.Rizzi, A.Ruangma, D.V.Shetty, G.Souliotis, P.Staszel, M.Veselsky, G.Viesti, E.M.Winchester, S.J.Yennello

Critical behavior in light nuclear systems: Experimental aspects

NUCLEAR REACTIONS 27Al, 48Ti, 58Ni(40Ar, X), (40Ar, pX), (40Ar, dX), (40Ar, tX), (40Ar, 3HeX), (40Ar, αX), E=47 MeV/nucleon; measured fragment charge distributions, charged particle spectra, multiplicities; deduced phase transition features.

doi: 10.1103/PhysRevC.71.054606
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2005PA77      Nucl.Instrum.Methods Phys.Res. A547, 464 (2005)

T.Paduszynski, P.Sprunger, R.T.de Souza, S.Hudan, A.Alexander, B.Davin, G.Fleener, A.Mcintosh, C.Metelko, R.Moore, N.Peters, J.Poehlman, J.Gauthier, F.Grenier, R.Roy, D.Theriault, E.Bell, J.Garey, J.Iglio, A.L.Keksis, S.Parketon, C.Richers, D.V.Shetty, S.N.Soisson, G.A.Souliotis, B.Stein, S.J.Yennello

Resolving multiple particles in a highly segmented silicon array

NUCLEAR REACTIONS 64Zn(64Zn, X), E = 45 MeV/nucleon; measured charge particle multiplicity distributions.

doi: 10.1016/j.nima.2005.04.011
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2005SH08      Phys.Rev. C 71, 024602 (2005)

D.V.Shetty, A.S.Botvina, S.J.Yennello, G.A.Souliotis, E.Bell, A.Keksis

Fragment yield distribution and the influence of neutron composition and excitation energy in multifragmentation reactions

NUCLEAR REACTIONS 58Fe, 58Ni(58Fe, X), (58Ni, X), E=30, 40, 47 MeV/nucleon; measured fragments isotopic yields; deduced isoscaling parameter, symmetry energy. Comparison with statistical multifragmentation model predictions.

doi: 10.1103/PhysRevC.71.024602
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetC1178.


2005VE03      Nucl.Phys. A749, 114c (2005)

M.Veselsky, S.J.Yennello

Thermodynamical properties of highly excited quasi-projectiles

NUCLEAR REACTIONS 112,124Sn(28Si, X), E=30, 50 MeV/nucleon; analyzed quasiprojectile fragmentation data; deduced thermodynamical properties.

doi: 10.1016/j.nuclphysa.2004.12.017
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2004MA20      Phys.Rev. C 69, 031604 (2004)

Y.G.Ma, R.Wada, K.Hagel, J.Wang, T.Keutgen, Z.Majka, M.Murray, L.Qin, P.Smith, J.B.Natowitz, R.Alfaro, J.Cibor, M.Cinausero, Y.El Masri, D.Fabris, E.Fioretto, A.Keksis, M.Lunardon, A.Makeev, N.Marie, E.Martin, A.Martinez-Davalos, A.Menchaca-Rocha, G.Nebbia, G.Prete, V.Rizzi, A.Ruangma, D.V.Shetty, G.Souliotis, P.Staszel, M.Veselsky, G.Viesti, E.M.Winchester, S.J.Yennello

Evidence of critical behavior in the disassembly of nuclei with A ∼ 36

NUCLEAR REACTIONS 58Ni(40Ar, X), E=47 MeV/nucleon; measured light charged particle and intermediate mass fragment spectra, charge and angular distributions; deduced critical behavior in quasiprojectile fragmentation.

doi: 10.1103/PhysRevC.69.031604
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2004MO24      Nucl.Phys. A739, 15 (2004)

R.Moustabchir, L.Beaulieu, L.Gingras, R.Roy, M.Samri, G.Boudreault, J.Gauthier, G.P.Gelinas, F.Grenier, R.Ibbotson, Y.Larochelle, E.Martin, J.Moisan, D.Ouerdane, D.Rowland, A.Ruangma, C.St-Pierre, D.Theriault, A.Vallee, E.Winchester, S.J.Yennello

Target proximity effect and dynamical projectile breakup at intermediate energies

NUCLEAR REACTIONS 12C, 24Mg, 197Au(58Ni, X), E=34.5 MeV/nucleon; 70Zn(58Ni, X), E=40 MeV/nucleon; measured fragments angular distributions, charge and velocity distributions, correlation functions; deduced quasi-projectile breakup mechanism, related features.

doi: 10.1016/j.nuclphysa.2004.03.149
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2004SH22      Nucl.Phys. A734, E100 (2004)

D.V.Shetty, A.Keksis, E.Martin, A.Ruangma, G.A.Souliotis, M.Veselsky, E.M.Winchester, S.J.Yennello, K.Hagel, Y.G.Ma, A.Makeev, N.Marie, M.Murray, J.B.Natowitz, L.Qin, P.Smith, R.Wada, J.Wang, M.Cinausero, E.Fioretto, G.Prete, D.Fabris, M.Lunardon, G.Nebbia, V.Rizzi, G.Viesti, J.Cibor, Z.Majka, P.Staszel, R.Alfaro, A.Martinez-Davalos, A.Menchaca-Rocha, Y.El Masri, T.Keutgen

Mid-rapidity emission in 124Sn, 124Xe + 124Sn, 112Sn reactions at 28 MeV/nucleon

NUCLEAR REACTIONS 112,124Sn(124Sn, X), (124Xe, X), E=28 MeV/nucleon; measured light charged particle and intermediate mass fragment yields, rapidity distributions vs centrality.

doi: 10.1016/j.nuclphysa.2004.03.030
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2004SH26      Phys.Rev. C 70, 011601 (2004)

D.V.Shetty, S.J.Yennello, A.S.Botvina, G.A.Souliotis, M.Jandel, E.Bell, A.Keksis, S.Soisson, B.Stein, J.Iglio

Symmetry energy and the isospin dependent equation of state

NUCLEAR REACTIONS 58Ni, 58Fe(58Ni, X), (58Fe, X), E=30, 40, 47 MeV/nucleon; measured fragment yield ratios; deduced isoscaling parameter, symmetry energy. Antisymmetrized molecular dynamics calculation.

doi: 10.1103/PhysRevC.70.011601
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2004SO10      Nucl.Phys. A734, 557 (2004)

G.A.Souliotis, M.Veselsky, G.Chubarian, L.Trache, S.J.Yennello

Neutron-Rich Rare Isotope production on the Fermi Energy Domain

NUCLEAR REACTIONS 64Ni, 112,124Sn(86Kr, X), E=25 MeV/nucleon; measured projectile-like fragments isotopic production σ.

doi: 10.1016/j.nuclphysa.2004.01.104
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2004SO11      Phys.Lett. B 588, 35 (2004)

G.A.Souliotis, M.Veselsky, D.V.Shetty, S.J.Yennello

Heavy-residue isoscaling as a probe of the process of N/Z equilibration

NUCLEAR REACTIONS 112,124Sn(86Kr, X), E=25 MeV/nucleon; measured fragment yield ratios; deduced isotopic and isobaric scaling behavior, N/Z equilibration features.

doi: 10.1016/j.physletb.2004.03.027
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2004SO33      Nucl.Phys. A746, 526c (2004)

G.A.Souliotis, M.Veselsky, D.V.Shetty, L.Trache, S.J.Yennello

Neutron-rich rare isotope production and studies of the N/Z degree of freedom in binary collisions at Fermi energies

NUCLEAR REACTIONS 64Ni, 112,124Sn(86Kr, X), E=25 MeV/nucleon; measured fragment yields; deduced reaction mechanism features.

doi: 10.1016/j.nuclphysa.2004.09.086
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2004TU04      Phys.Rev. C 70, 014608 (2004)

S.Turbide, L.Beaulieu, P.Danielewicz, V.E.Viola, R.Roy, K.Kwiatkowski, W.-C.Hsi, G.Wang, T.Lefort, D.S.Bracken, H.Breuer, E.Cornell, F.Gimeno-Nogues, D.S.Ginger, S.Gushue, R.Huang, R.Korteling, W.G.Lynch, K.B.Morley, E.Ramakrishnan, L.P.Remsberg, D.Rowland, M.B.Tsang, H.Xi, S.J.Yennello

Effects of in-medium cross sections and optical potential on thermal-source formation in p + 197Au reactions at 6.2-14.6 GeV/c

NUCLEAR REACTIONS 197Au(p, X), E at 6.4-14.6 GeV/c; measured light charged particle spectra, yields, charge distributions; deduced reaction mechanism features. Transport model.

doi: 10.1103/PhysRevC.70.014608
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2004VE05      Phys.Rev. C 69, 031602 (2004)

M.Veselsky, G.A.Souliotis, S.J.Yennello

Isoscaling in peripheral nuclear collisions around the Fermi energy and a signal of chemical separation from its excitation energy dependence

NUCLEAR REACTIONS 112,124Sn(28Si, X), E=30, 50 MeV/nucleon; analyzed fragment yields; deduced isoscaling parameter.

doi: 10.1103/PhysRevC.69.031602
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2004VI10      Phys.Rev.Lett. 93, 132701 (2004)

V.E.Viola, K.Kwiatkowski, J.B.Natowitz, S.J.Yennello

Breakup Densities of Hot Nuclei

NUCLEAR REACTIONS 197Au(α, X), E=200 MeV; 197Au(14N, X), E=20-100 MeV/nucleon; 197Au(3He, X), E=4.8 GeV; analyzed intermediate mass fragment spectra; deduced breakup densities.

doi: 10.1103/PhysRevLett.93.132701
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2003RO11      Phys.Rev. C 67, 064602 (2003)

D.J.Rowland, R.Laforest, E.Ramakrishnan, M.Veselsky, E.M.Winchester, A.Ruangma, E.Martin, S.J.Yennello

Formation of excited systems with a wide range in N/Z

NUCLEAR REACTIONS 197Au(20F, X), (20Ne, X), (20Na, X), E=32 MeV/nucleon; measured fragments isotopic yields, excitation energies; deduced reaction mechanism features.

doi: 10.1103/PhysRevC.67.064602
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2003SH23      Phys.Rev. C 68, 021602 (2003)

D.V.Shetty, S.J.Yennello, E.Martin, A.Keksis, G.A.Souliotis

Energy dependence of the isotopic composition in nuclear multifragmentation

NUCLEAR REACTIONS 58Ni, 58Fe(58Ni, X), (58Fe, X), E=30, 40, 47 MeV/nucleon; measured fragment isotopic yields; deduced relative free neutron and proton densities.

doi: 10.1103/PhysRevC.68.021602
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2003SH36      Phys.Rev. C 68, 054605 (2003)

D.V.Shetty, A.Keksis, E.Martin, A.Ruangma, G.A.Souliotis, M.Veselsky, E.M.Winchester, S.J.Yennello, K.Hagel, Y.G.Ma, A.Makeev, N.Marie, M.Murray, J.B.Natowitz, L.Qin, P.Smith, R.Wada, J.Wang, M.Cinausero, E.Fioretto, G.Prete, D.Fabris, M.Lunardon, G.Nebbia, V.Rizzi, G.Viesti, J.Cibor, Z.Majka, P.Staszel, R.Alfaro, A.Martinez-Davalos, A.Menchaca-Rocha, Y.El Masri, T.Keutgen, and the NIMROD Collaboration

Intermediate mass fragments and isospin dependence in 124Sn, 124Xe + 124Sn 112Sn reactions at 28 MeV/nucleon

NUCLEAR REACTIONS 112,124Sn(124Sn, X), (124Xe, X), E=28 MeV/nucleon; measured light charged particle and intermediate mass fragments isotopic yields, energy spectra, multiplicities; deduced isospin dependences.

doi: 10.1103/PhysRevC.68.054605
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2003SO09      Nucl.Instrum.Methods Phys.Res. B204, 166 (2003)

G.A.Souliotis, M.Veselsky, G.Chubarian, S.J.Yennello

Production and separation of neutron-rich rare isotopes around and below the Fermi energy

NUCLEAR REACTIONS 64Ni(86Kr, X), E=25 MeV/nucleon; 124Sn(124Sn, X), E=21 MeV/nucleon; measured fragment mass distributions, isotopic production σ.

doi: 10.1016/S0168-583X(02)01914-6
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2003SO12      Phys.Rev.Lett. 91, 022701 (2003)

G.A.Souliotis, M.Veselsky, G.Chubarian, L.Trache, A.Keksis, E.Martin, D.V.Shetty, S.J.Yennello

Enhanced Production of Neutron-Rich Rare Isotopes in Peripheral Collisions at Fermi Energies

NUCLEAR REACTIONS 64Ni, 112,124Sn(86Kr, X), E=25 MeV/nucleon; measured fragment charge and mass distributions; deduced enhanced production of neutron-rich isotopes from peripheral nucleon exchange.

doi: 10.1103/PhysRevLett.91.022701
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2003SO15      Phys.Rev. C 68, 024605 (2003)

G.A.Souliotis, D.V.Shetty, M.Veselsky, G.Chubarian, L.Trache, A.Keksis, E.Martin, S.J.Yennello

Isotopic scaling of heavy projectile residues from the collisions of 25 MeV/nucleon 86Kr with 124Sn, 112Sn and 64Ni, 58Ni

NUCLEAR REACTIONS 58,64Ni, 112,124Sn(86Kr, X), E=25 MeV/nucleon; measured fragments isotopic yields, velocity distributions; deduced scaling features.

doi: 10.1103/PhysRevC.68.024605
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2003VE06      Nucl.Phys. A724, 431 (2003)

M.Veselsky, G.A.Souliotis, G.Chubarian, L.Trache, A.Keksis, E.Martin, A.Ruangma, E.Winchester, S.J.Yennello

Heavy residues with A < 90 from the asymmetric reaction of 20 A MeV 124Sn + 27Al as a sensitive probe of the onset of multifragmentation

NUCLEAR REACTIONS 27Al(124Sn, X), E=20 MeV/nucleon; measured fragments isotopic yields, velocity distributions; deduced reaction mechanism features. Statistical model of multifragmentation.

doi: 10.1016/S0375-9474(03)01571-9
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2002BB19      Acta Phys.Hung.N.S. 15, 417 (2002)

W.Bauer, M.Kleine Berkenbusch, L.Beaulieu, T.Lefort, R.G.Korteling, K.Kwiatkowski, H.Breuer, S.Pratt, W.-c.Hsi, V.E.Viola, S.J.Yennello

Setting Bounds on Critical Exponents with Event-by-Event Analysis of Nuclear Fragmentation Data

NUCLEAR REACTIONS 197Au(p, X), E=10.2 GeV; analyzed fragments charge yield distributions; deduced phase transition features.

doi: 10.1556/APH.15.2002.3-4.24
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2002DA24      Phys.Rev. C66, 044602 (2002)

C.B.Das, S.Das Gupta, L.Beaulieu, T.Lefort, K.Kwiatkowski, V.E.Viola, S.J.Yennello, L.Pienkowski, R.G.Korteling, H.Breuer

Tracking the phase-transition energy in the disassembly of hot nuclei

NUCLEAR REACTIONS 197Au(π-, X), E at 8 GeV/c; analyzed data; deduced phase transition features.

doi: 10.1103/PhysRevC.66.044602
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2002EL02      Phys.Rev.Lett. 88, 042701 (2002)

J.B.Elliott, L.G.Moretto, L.Phair, G.J.Wozniak, L.Beaulieu, H.Breuer, R.G.Korteling, K.Kwiatkowski, T.Lefort, L.Pienkowski, A.Ruangma, V.E.Viola, S.J.Yennello, and the ISiS Collaboration

Liquid to Vapor Phase Transition in Excited Nuclei

NUCLEAR REACTIONS 197Au(π-, X), E at 8 GeV/c; analyzed fragment charge distributions, mass yields, related data; deduced phase transition features. Fisher's model scaling.

doi: 10.1103/PhysRevLett.88.042701
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2002KL01      Phys.Rev.Lett. 88, 022701 (2002)

M.Kleine Berkenbusch, W.Bauer, K.Dillman, S.Pratt, L.Beaulieu, K.Kwiatkowski, T.Lefort, W.-C.Hsi, V.E.Viola, S.J.Yennello, R.G.Korteling, H.Breuer

Event-by-Event Analysis of Proton-Induced Nuclear Multifragmentation: Determination of the phase transition university class in a system with extreme finite-size constraints

NUCLEAR REACTIONS 197Au(p, X), E at 10.2 GeV/c; analyzed fragment yields; deduced phase transition features. Percolation model.

doi: 10.1103/PhysRevLett.88.022701
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2002PI11      Phys.Rev. C65, 064606 (2002)

L.Pienkowski, K.Kwiatkowski, T.Lefort, W.-C.Hsi, L.Beaulieu, V.E.Viola, A.Botvina, R.G.Korteling, R.Laforest, E.Martin, E.Ramakrishnan, D.Rowland, A.Ruangma, E.Winchester, S.J.Yennello, B.Back, H.Breuer, S.Gushue, L.P.Remsberg

Breakup Time Scale Studied in the 8 GeV/c π- + 197Au Reaction

NUCLEAR REACTIONS 197Au(π-, X), E at 8 GeV/c; measured fragments charge, energy, angular distributions; deduced breakup time scale, related reaction mechanism features.

doi: 10.1103/PhysRevC.65.064606
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2002RU12      Phys.Rev. C66, 044603 (2002)

A.Ruangma, R.Laforest, E.Martin, E.Ramakrishnan, D.J.Rowland, M.Veselsky, E.M.Winchester, S.J.Yennello, L.Beaulieu, W.-c.Hsi, K.Kwiatkowski, T.Lefort, V.E.Viola, A.Botvina, R.G.Korteling, L.Pienkowski, H.Breuer, S.Gushue, L.P.Remsberg, B.Back

Caloric curve of 8 GeV/c π-, p-bar + 197Au reactions

NUCLEAR REACTIONS 197Au(p-bar, X), (π-, X), E at 8 GeV/c; measured fragment spectra, yields ratios; deduced caloric curves. Comparison with model predictions.

doi: 10.1103/PhysRevC.66.044603
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2002SO13      Phys.Lett. 543B, 163 (2002)

G.A.Souliotis, M.Veselsky, G.Chubarian, L.Trache, A.Keksis, E.Martin, A.Ruangma, E.Winchester, S.J.Yennello

Enhanced production of neutron-rich rare isotopes in the reaction of 25 MeV/nucleon 86Kr on 64Ni

NUCLEAR REACTIONS 64Ni(86Kr, X), E=25 MeV/nucleon; measured projectile-like fragments isotopic yields, velocity distributions; deduced reaction mechanism features. 64Ni(86Kr, X)84Se/85Se/86Se/87Se/88Se/82Ge/83Ge/84Ge, E=25 MeV/nucleon; measured production σ. Comparisons with model predictions, previous measurements. Mass separator.

doi: 10.1016/S0370-2693(02)02459-0
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