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Study of the nuclear symmetry energy from the rapidity-dependent elliptic flow in heavy-ion collisions around 1 GeV/nucleon regime

机译:核对称能量从1 GEV / Nucleon制度左右的重离子碰撞中的快速依赖性椭圆流的研究

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摘要

The elliptic flow ratio of neutrons versus protons in heavy-ion collisions (HICs) is one of the important probes to constrain the nuclear symmetry energy, however measuring the flow of neutrons with high precision is a great challenge for experimental techniques. In this work, the elliptic flow of protons is studied and it is found that the rapidity at which the sign of v2 changes from negative to positive is sensitive to the density dependence of the symmetry energy. By comparing the existing FOPI experimental data for proton flows to the calculations with the ultrarelativistic quantum molecular dynamics (UrQMD) model, the slope parameter of the nuclear symmetry energy is extracted to be L0=43±20 MeV at 95% confidence level. This is in good agreement with many recent results from investigations of nuclear structure properties and also partly overlaps with the recent result of the ASY-EOS experiment. Keywords: Nuclear symmetry energy, Transport model, Heavy ion collision, Elliptic flow
机译:中子椭圆形流量比与重离子碰撞(HICS)中的质子(HICS)是限制核对称能量的重要探头之一,然而测量具有高精度的中子流动是实验技术的巨大挑战。在这项工作中,研究了质子的椭圆形流动,并且发现V2符号从负到正的符号变化的快速性对对称能量的密度依赖性敏感。通过比较质子流动的现有FoPI实验数据与Utrarivistic量子分子动力学(URQMD)模型的计算,核对称能量的斜率参数以95%的置信水平提取为L0 = 43±20meV。这与核结构性质调查的许多近期结果有关,并且部分与ASY-EOS实验的最近结果重叠。关键词:核对称能量,运输模型,重离子碰撞,椭圆形流动

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