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The LHCb Stripping Project: Sustainable Legacy Data Processing for High-Energy Physics. [PDF]
Grieser NA +5 more
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Selective Nonthermal Melting in Phlogopite under Ultrafast Energy Deposition. [PDF]
Medvedev N.
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Processes with heavy ion collisions
Physics of Particles and Nuclei, 2011Some Coulomb effects in heavy ion collisions are considered. Among them the process of muon and lepton pair creation, Coulomb and unitary corrections, statistics of multiple pair production. Effects of mul- tiple photon exchange in process of lepton pair production by linearly polarized photon on nuclei are consid- ered.
B. Arbuzov, A. +4 more
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Pramana, 1998
This is a short summary of the systematics observed in various heavy-ion experiments at CERN SPS energies.
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This is a short summary of the systematics observed in various heavy-ion experiments at CERN SPS energies.
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Microscopic description of heavy ion collisions
Nuclear Physics A, 1990Abstract We solve numerically the Boltzmann Nordheim Vlasov equation and apply it to calculate physical observables. The collision term is treated in the mean free path approximation and checked for an exactly soluble problem. We calculate particle spectra produced in heavy ion collisions around the Fermi energy.
A. Bonasera +6 more
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2005
The study of heavy ion collisions is motivated by the desire to probe properties of nuclear matter under unusual. conditions. Depending on the energy of the beam and the impact parameter of the collision, different phenomena are observed. A survey of typical experimental data and their interpretations are presented.
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The study of heavy ion collisions is motivated by the desire to probe properties of nuclear matter under unusual. conditions. Depending on the energy of the beam and the impact parameter of the collision, different phenomena are observed. A survey of typical experimental data and their interpretations are presented.
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Heavy-Ion Collisions: Experimental Highlights
Nuclear Physics A, 2009Lattice QCD predicts a phase transition between hadronic matter and a system of deconfined quarks and gluons (the Quark Gluon Plasma) at high energy densities. Our current understanding of this new state of matter will be discussed with two key results from the Relativistic Heavy Ion Collider (RHIC).
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Annual Review of Nuclear Science, 1977
Macroscopic and microscopic models of heavy-ion nuclear reactions are discussed. Correlations of different experimental parameters are considered.(AIP)
W U Schroder, J R Huizenga
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Macroscopic and microscopic models of heavy-ion nuclear reactions are discussed. Correlations of different experimental parameters are considered.(AIP)
W U Schroder, J R Huizenga
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1989
Results of recent experiments using relativistic ion beams are summarized. Several features of the data are presented which could be in the line of theoretical predictions resulting from the phase transition of ordinary matter to a deconfined Quark-Gluon Plasma.
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Results of recent experiments using relativistic ion beams are summarized. Several features of the data are presented which could be in the line of theoretical predictions resulting from the phase transition of ordinary matter to a deconfined Quark-Gluon Plasma.
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Entropy evolution in heavy ion collision
Physical Review C, 1985The entropy evolution in heavy ion collisions is investigated by means of a cascade model study. The method for calculating the entropy is based on a smoothing over the momentum space by introducing a local temperature field. It is shown that the resulting specific entropy is rather sensitive to the proper choice of the phase space subdivision at the ...
, Gudima, , Toneev, , Röpke, , Schulz
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