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Consequences of kinetic non-equilibrium for the nuclear equation-of-state in heavy ion collision

机译:重离子碰撞中核态方程动力学不平衡的后果

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Highly compressed nuclear matter created in relativistic heavy collisions is to large extent governed by local non-equilibrium. As an idealized scenario colliding nuclear matter configurations are studied within both, relativistic mean field theory and using more realistic in-medium interactions based on the Dirac-Brueckner T-matrix. The equation of state in anisotropic matter is thereby governed by two competing effects: the enlarged phase space volume in colliding matter tends to soften the internal potential energy of the subsystems whereas the relative motion of the two currents leads to a strong additional repulsion in the system. An effective EOS constructed for anisotropic momentum configurations shows a significant net softening compared to ground state nuclear matter. This effect is found to be to large extend independent on the particular choice of the nuclear interaction. A critical discussion of standard transport approaches with respect to the considered non-equilibrium effects is given. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 58]
机译:相对论性重碰撞中产生的高度压缩核物质在很大程度上受局部非平衡支配。作为一种理想的方案,在相对论平均场理论和基于Dirac-Brueckner T矩阵的更现实的介质内相互作用中都研究了碰撞核质构型。因此,各向异性物质中的状态方程受两个相互竞争的影响所控制:碰撞物质中相空间的增大会趋于软化子系统的内部势能,而两种电流的相对运动会导致系统中产生强烈的附加排斥力。与基态核物质相比,为各向异性动量构造构造的有效EOS显示出明显的净软化。发现这种效应在很大程度上与核相互作用的特定选择无关。给出了关于考虑到的非平衡效应的标准运输方法的批判性讨论。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:58]

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