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Effects of incompressibility $K_{0}$ in heavy-ion collisions at intermediate energies

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arxiv 2402.12912 v2 pith:MFIBHL2V submitted 2024-02-20 nucl-th nucl-ex

classification nucl-thnucl-ex
keywords incompressibilitychargedcollisionsdensitydistributionseffectsenergiesenergy
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abstract

Within the possible least uncertainty on the nuclear incompressibility $K_{0}$, we examine effects of $K_{0}$ in heavy-ion collisions at intermediate energies. Based on simulations of Au + Au collision at 400 MeV/nucleon using an isospin- and momentum-dependent transport model, we find that the incompressibility $K_{0}$ indeed affects significantly the attainable density in central regions, and thus the particle productions and/or distributions at final states, e.g., nucleon rapidity distributions and yields of charged pions. Nevertheless, through examining the free neutron over proton ratios $n/p$, the neutron-proton differential transverse and directed flows as well as the charged pion ratio $\pi^{-}/\pi^{+}$ and its kinetic energy distribution, we find that these observables are less affected by the uncertainty of $K_{0}$, but mainly sensitive to the slope of symmetry energy at the saturation density. We also compare and discuss our results with the corresponding data.

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  1. In-medium effects of nucleon-nucleon cross sections in heavy-ion collisions

    nucl-th 2025-07 conditional novelty 5.0 of 10

    Using BHF-derived in-medium cross sections in the IBUU transport model, the paper shows that nuclear stopping and differential flow are sensitive to scattering-amplitude, density-of-states, and total-momentum effects,...

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