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- W1970578851 abstract "Recently, it has been observed that events with the same total transverse energy of light charged particles (LCP) in the quasitarget region, ${E}_{ensuremath{perp}12}^{mathrm{QT}}$, show two quite distinct reaction scenarios in the projectile domain: multifragmentation and residue production. This phenomenon has been dubbed ``bimodality.'' Using quantum molecular dynamics calculations we demonstrate that this observation is very general. It appears in collisions of all symmetric systems larger than Ca and at beam energies between $50A$ MeV and $600A$ MeV and is due to large fluctuations of the impact parameter for a given ${E}_{ensuremath{perp}12}^{mathrm{QT}}$. Investigating in detail the ${E}_{ensuremath{perp}12}^{mathrm{QT}}$ bin in which both scenarios are present, we find that neither the average fragment momenta nor the average transverse and longitudinal energies of fragments show the behavior expected from a system in statistical equilibrium, in experiment as well as in QMD simulations. On the contrary, the experimental as well as the theoretical results point toward a fast process. This observation questions the conjecture that the observed bimodality is due to the coexistence of two phases at a given temperature in finite systems." @default.
- W1970578851 created "2016-06-24" @default.
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- W1970578851 date "2009-10-27" @default.
- W1970578851 modified "2023-10-05" @default.
- W1970578851 title "Bimodality: A general feature of heavy ion reactions" @default.
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- W1970578851 doi "https://doi.org/10.1103/physrevc.80.044615" @default.
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