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NSR database version of May 30, 2024.

Search: Author = J.Konopka

Found 10 matches.

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1998BA86      Phys.Rev.Lett. 81, 4092 (1998)

S.A.Bass, M.Belkacem, M.Brandstetter, M.Bleicher, L.Gerland, J.Konopka, L.Neise, C.Spieles, S.Soff, H.Weber, H.Stocker, W.Greiner

Are We Close to an Equilibrated Quark-Gluon Plasma ? Nonequilibrium Analysis of Particle Production in Ultrarelativistic Heavy Ion Collisions

NUCLEAR REACTIONS 1H(p, X), 197Au(S, X), Pb(Pb, X), E=high; calculated hadron yields, ratios; deduced rapidity dependence, secondary interactions role. Microscopic transport model, nonequilibrium kinetic theory. Comparison with data.

doi: 10.1103/PhysRevLett.81.4092
Citations: PlumX Metrics


1998BB06      Prog.Part.Nucl.Phys. 41, 255 (1998)

S.A.Bass, M.Belkacem, M.Bleicher, M.Brandstetter, L.Bravina, C.Ernst, L.Gerland, M.Hoffmann, S.Hofmann, J.Konopka, G.Mao, L.Neise, S.Soff, C.Spieles, H.Weber, L.A.Winckelmann, H.Stocker, W.Greiner, Ch.Hartnack, J.Aichelin, N.Amelin

Microscopic Models for Ultrarelativistic Heavy Ion Collisions

doi: 10.1016/S0146-6410(98)00058-1
Citations: PlumX Metrics


1998BE53      Phys.Rev. C58, 1727 (1998)

M.Belkacem, M.Brandstetter, S.A.Bass, M.Bleicher, L.Bravina, M.I.Gorenstein, J.Konopka, L.Neise, C.Spieles, S.Soff, H.Weber, H.Stocker, W.Greiner

Equation of State, Spectra, and Composition of Hot and Dense Infinite Hadronic Matter in a Microscopic Transport Model

doi: 10.1103/PhysRevC.58.1727
Citations: PlumX Metrics


1998HA11      Eur.Phys.J. A 1, 151 (1998)

C.Hartnack, R.K.Puri, J.Aichelin, J.Konopka, S.A.Bass, H.Stocker, W.Greiner

Modelling the Many-Body Dynamics of Heavy Ion Collisions: Present status and future perspective

NUCLEAR REACTIONS 197Au(197Au, X), E=high; calculated momentum distributions, transverse flow, excitation functions, other features. Quantum molecular dynamics model, several versions compared.

doi: 10.1007/s100500050045
Citations: PlumX Metrics


1997RO06      Z.Phys. A358, 73 (1997)

C.Roy, C.Kuhn, J.P.Coffin, P.Crochet, P.Fintz, G.Guillaume, F.Jundt, C.Maazouzi, F.Rami, L.Tizniti, P.Wagner, J.P.Alard, V.Amouroux, Z.Basrak, N.Bastid, I.Belyaev, D.Best, J.Biegansky, A.Buta, R.Caplar, N.Cindro, R.Dona, P.Dupieux, M.Dzelalija, Z.G.Fan, Z.Fodor, L.Fraysse, A.Gobbi, N.Herrmann, K.D.Hildenbrand, S.Holbling, B.Hong, S.C.Jeong, J.Kecskemeti, M.Kirejczyk, P.Koncz, Y.Korchagin, R.Kotte, A.Lebedev, I.Legrand, Y.Leifels, V.Manko, G.Mgebrishvili, D.Moisa, J.Mosner, W.Neubert, D.Pelte, M.Petrovici, C.Pinkenburg, P.Pras, W.Reisdorf, J.L.Ritman, A.G.Sadchikov, D.Schull, Z.Seres, B.Sikora, V.Simion, V.Smolyankin, U.Sodan, M.Trzaska, M.Vasiliev, G.S.Wang, J.P.Wessels, T.Wienold, D.Wohlfarth, A.Zhilin, J.Konopka, H.Stocker

Shape of Collective Flow in Highly Central Au(150 A MeV)+Au Collisions

NUCLEAR REACTIONS 197Au(197Au, X), E=150 MeV/nucleon; measured fragment transverse momentum per nucleon vs rapidity, light charged-particle σ(θ); deduced flow pattern in highly central collisions. FOPI detector.

doi: 10.1007/s002180050278
Citations: PlumX Metrics


1996WI26      Nucl.Phys. A610, 116c (1996)

L.A.Winckelmann, S.A.Bass, M.Bleicher, M.Brandstetter, A.Dumitru, C.Ernst, L.Gerland, J.Konopka, S.Soff, C.Spieles, H.Weber, C.Hartnack, J.Aichelin, N.Amelin, H.Stocker, W.Greiner

Microscopic Calculations of Stopping, Flow and Electromagnetic Radiation from 160A MeV to 160A GeV

NUCLEAR REACTIONS 197Au(197Au, X), E=10.6 GeV/nucleon; Pb(Pb, X), E=160 GeV/nucleon; S(S, X), E=200 GeV/nucleon; calculated rapidity distributions. 9Be(p, X), E=450 GeV; 197Au(Pb, X), 197Au(S, X), E=200 GeV/nucleon; analyzed dilepton mass spectra. Ultrarelativistic quantum molecular dynamics.

doi: 10.1016/S0375-9474(96)00347-8
Citations: PlumX Metrics


1995CO04      Nucl.Phys. A583, 567c (1995)

J.P.Coffin, C.Kuhn, C.Roy, C.Cerruti, P.Crochet, P.Fintz, G.Guillaume, A.Houari, F.Jundt, F.Rami, L.Tizniti, P.Wagner, J.Konopka, H.Stocker, and the FOPI Collaboration

Prominent Transverse Flow of Clusters in Stopped Au (150A MeV) + Au Reactions

NUCLEAR REACTIONS 197Au(197Au, X), E=150 MeV/nucleon; measured per nucleon transverse momentum vs rapidity for fragments; deduced clusters transverse flow dominance.

doi: 10.1016/0375-9474(94)00727-5
Citations: PlumX Metrics


1995KO06      Nucl.Phys. A583, 357c (1995)

J.Konopka, H.Stocker, W.Greiner

On the Impossibility of Temperature Extraction from Heavy Ion Induced Particle Spectra

NUCLEAR REACTIONS 197Au(197Au, X), E=150 MeV/nucleon; analyzed Li emission data; calculated densities, local collective flow velocities, other aspects. Quantum molecular dynamics model.

doi: 10.1016/0375-9474(94)00687-I
Citations: PlumX Metrics


1994KO24      Phys.Rev. C50, 2085 (1994)

J.Konopka, H.Graf, H.Stocker, W.Greiner

Observable Consequences of Chemical Equilibration in Energetic Heavy Ion Collisions

NUCLEAR REACTIONS 40Ca(40Ca, X), 56Ni(56Ni, X), 120Sn(120Sn, X), 197Au(197Au, X), 238U(238U, X), E not given; calculated reduced total fragment multiplicity vs baryonic entropy, light charged particle relative yields, ratios. Quantum statistical model.

doi: 10.1103/PhysRevC.50.2085
Citations: PlumX Metrics


1992PE08      Phys.Rev. C46, 1457 (1992)

G.Peilert, J.Konopka, H.Stocker, W.Greiner, M.Blann, M.G.Mustafa

Dynamical Treatment of Fermi Motion in a Microscopic Description of Heavy Ion Collisions

NUCLEAR REACTIONS Zr, Pb, 27Al(p, xn), E=80-800 MeV; analyzed σ(θ, En). Quantum molecular dynamics model.

doi: 10.1103/PhysRevC.46.1457
Citations: PlumX Metrics


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