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首页> 外文期刊>Nuclear Physics, A: Journal Devoted to the Experimental Study of the Fundamental Constituents of Matter and Their Actions >NON-EQUILIBRIUM FLUID-DYNAMICS IN THE EARLY STAGE OF ULTRARELATIVISTIC HEAVY-ION COLLISIONS
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NON-EQUILIBRIUM FLUID-DYNAMICS IN THE EARLY STAGE OF ULTRARELATIVISTIC HEAVY-ION COLLISIONS

机译:超相对论重离子碰撞早期的非平衡流体动力学

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摘要

To describe ultrarelativistic heavy-ion collisions we construct a three-fluid hydrodynamical model. In contrast to one-fluid hydrodynamics, it accounts for the finite stopping power of nuclear matter, i.e. for non-equilibrium effects in the early stage of the reaction. Within this model, we study baryon dynamics in the BNL-AGS energy range. For the system Au+Au we find that kinetic equilibrium between projectile and target nucleons is established only after a time t(cm)(cq) approximate to 5 fm/c similar or equal to 2R(Au)/(gamma cm). Observables that are sensitive to the early stage of the collision (like e.g. nucleon flow) therefore differ considerably from those calculated in the one-fluid model. (C) 1997 Elsevier Science B.V. [References: 72]
机译:为了描述超相对论重离子碰撞,我们构建了三流体流体动力学模型。与单流体流体力学相反,它解释了核物质的有限停止能力,即反应早期的非平衡作用。在此模型中,我们研究了BNL-AGS能量范围内的重子动力学。对于系统Au + Au,我们发现仅在大约5 fm / c的时间t(cm)(cq)近似于或等于2R(Au)/(γcm)的时间后,才能建立射弹和目标核子之间的动力学平衡。因此,对碰撞早期敏感的可观测物(例如核子流)与单流体模型中计算出的可观测物有很大差异。 (C)1997 Elsevier Science B.V. [参考:72]

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