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- W2016125556 abstract "We present a Poincar'e covariant model for ultrarelativistic particle reactions without any field degrees of freedom. A relativistic two-particle interaction is made possible by an enlargement of phase space and a distinction between physical and canonical particle coordinates. A Hamiltonian formalism with a mass-like quasipotential defines the dynamics of the system. Then interaction at a distance causes a change of effective particle masses instead of energy. Particle production is incorporated by a phenomenological decay procedure for the constituents (partons) in a manner analogous to a string fragmentation mechanism. This pure particle picture for Poincar'e covariant collision dynamics (PCD model) is compared to other microscopic models and tested by simulations of ${mathit{e}}^{+}$${mathit{e}}^{mathrm{ensuremath{-}}}$ jet events. Before application to more complex scenarios like ultrarelativistic heavy ion collisions, hard gluonic effects should be included. In the PCD model, this can be done by introduction of massive gluons as particles." @default.
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- W2016125556 title "Poincaré covariant particle dynamics. II. Fragmentation for ultrarelativistic reactions" @default.
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- W2016125556 doi "https://doi.org/10.1103/physrevc.49.3266" @default.
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