首页> 外文期刊>Nuclear Physics, A: Journal Devoted to the Experimental Study of the Fundamental Constituents of Matter and Their Actions >COLLECTIVE EFFECTS AND MULTIFRAGMENTATION IN HEAVY-ION COLLISIONS AT INTERMEDIATE ENERGIES WITHIN A HYBRID MODEL
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COLLECTIVE EFFECTS AND MULTIFRAGMENTATION IN HEAVY-ION COLLISIONS AT INTERMEDIATE ENERGIES WITHIN A HYBRID MODEL

机译:混合模型中级能量在重离子碰撞中的集体效应和多重分解

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Central and semi-central Au + Au collisions at 150 and 250 A . MeV are investigated in the framework of a hybrid model with dynamical and statistical components. Starting from the BUU approach an ansatz for the Wigner function is made which describes thermal and collective motion of the nucleons and models the transition from the one-source to the two-source behavior. Anisotropic flow energies and temperatures as well as angular momenta are extracted. Nucleonic flow and pre-equilibrium emission reduce considerably the excitation energy of the matter. The cluster formation is described by the Copenhagen multifragmentation model. Charge spectra, energy spectra and two-particle correlations of the fragments are reproduced. Agreement with experiment can be improved by assuming st reduced transverse flow. [References: 60]
机译:中心和半中心Au + Au在150和250 A时发生碰撞。在具有动力学和统计成分的混合模型的框架内研究了MeV。从BUU方法开始,制作了Wigner函数的ansatz,它描述了核子的热运动和集体运动,并模拟了从一源到二源行为的过渡。提取各向异性的流动能量和温度以及角动量。核流和预平衡发射会大大降低物质的激发能。簇的形成由哥本哈根多片段模型描述。再现了碎片的电荷谱,能谱和两粒子相关性。通过假定横向流量减小可以改善与实验的一致性。 [参考:60]

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