论文标题
使用中级能量的重离子碰撞探测高密度对称能
Probing high-density symmetry energy using heavy-ion collisions at intermediate energies
论文作者
论文摘要
在过去的二十年中,已经对核物质中每个质子和中子的能量差进行了描述。在饱和密度周围,核对称能的值和斜率都受到了大致限制,其高密度行为现在仍在争论中。在全球提供放射性光束的设施中,正在探测陆地实验室的高密度对称能量。在进行相关实验的同时,我们从理论上开发了更先进的同胞依赖性转运模型,包括新物理学,例如核子核子短距离相关性和巴属 - 巴里子散射横截面的中等同胞依赖性。提供了高密度对称能量的新敏感探针,例如挤压的中子与质子比,光子和光簇以及具有陌生或隐藏陌生性的介子的产生。证明了可观察到的敏感对称能量探测高密度对称能的盲点。经常使用的对称能量敏感探针的模型依赖性已根据不同的传输模型进行了彻底研究。提出了高发射能量中的质子比的定性质子比,以质量地探测高密度的对称能。仔细研究了对称能的探测密度区域。仔细探索了核子核子短距离相关性对重离子碰撞中对称能量的某些敏感可观察到的影响。提出了通过涉及传输模型中饱和点对称能的斜率信息来探测对称能的曲率。
The nuclear symmetry energy, which describes the energy difference of per proton and neutron in nuclear matter, has been extensively studied within the last two decades. Around saturation density, both the value and the slope of the nuclear symmetry energy have been roughly constrained, its high-density behavior is now still in argument. Probing high-density symmetry energy at terrestrial laboratories is being carried out at facilities that offer radioactive beams worldwide. While relevant experiments are being conducted, we theoretically developed more advanced isospin-dependent transport model including new physics such as nucleon-nucleon short-range correlations and in-medium isospin-dependence of baryon-baryon scattering cross section. New sensitive probes of high-density symmetry energy are provided, such as squeezed-out neutron to proton ratio, photon and light cluster as well as the production of mesons with strangeness or hidden strangeness. The blind spots of probing the high-density symmetry energy by sensitive observable are demonstrated. Model dependence of frequently used sensitive probes of the symmetry energy has been studied thoroughly based on different transport models. A qualitative observable of neutron to proton ratio at high emitting energy is proposed to probe the high-density symmetry energy qualitatively. The probed density regions of the symmetry energy are carefully studied. Effects of nucleon-nucleon short-range correlations on the some sensitive observables of the symmetry energy in heavy-ion collisions are explored carefully. Probing the curvature of the symmetry energy by involving the slope information of the symmetry energy at saturation point in the transport model is proposed.