首页> 外文期刊>The European Physical Journal, A. Hadrons and Nuclei >Probing nuclear symmetry energy at high densities using pion, kaon, eta and photon productions in heavy-ion collisions
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Probing nuclear symmetry energy at high densities using pion, kaon, eta and photon productions in heavy-ion collisions

机译:在重离子碰撞中使用pion,kaon,eta和光子产生来探测高密度的核对称能量

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The high-density behavior of nuclear symmetry energy is among the most uncertain properties of dense neutron-rich matter. Its accurate determination has significant ramifications in understanding not only the reaction dynamics of heavy-ion reactions, especially those induced by radioactive beams, but also many interesting phenomena in astrophysics, such as the explosion mechanism of supernova and the properties of neutron stars. The heavy-ion physics community has devoted much effort during the last few years to constrain the high-density symmetry using various probes. In particular, the π~?/π~+ ratio has been most extensively studied both theoretically and experimentally. All models have consistently predicted qualitatively that the π~?/π~+ ratio is a sensitive probe of the high-density symmetry energy especially with beam energies near the pion production threshold. However, the predicted values of the π~?/π~+ ratio are still quite model dependent mostly because of the complexity of modeling pion production and reabsorption dynamics in heavy-ion collisions, leading to currently still controversial conclusions regarding the high-density behavior of nuclear symmetry energy from comparing various model calculations with available experimental data. As more π~?/π~+ data become available and a deeper understanding about the pion dynamics in heavy-ion reactions is obtained, more penetrating probes, such as the K+/K0 ratio, η meson and high-energy photons are also being investigated or planned at several facilities. Here, we review some of our recent contributions to the community effort of constraining the high-density behavior of nuclear symmetry energy in heavy-ion collisions. In addition, the status of some worldwide experiments for studying the high-density symmetry energy, including the HIRFL-CSR external target experiment (CEE) are briefly introduced.
机译:核对称能量的高密度行为是致密的富中子物质最不确定的特性之一。它的精确确定不仅在理解重离子反应的反应动力学,特别是由放射性束引起的反应动力学方面具有重要意义,而且在天体物理学中还存在许多有趣的现象,例如超新星的爆炸机理和中子星的性质。在过去的几年中,重离子物理学界付出了巨大的努力,以使用各种探针来限制高密度对称性。特别是,在理论上和实验上都对π/π/π+比率进行了最广泛的研究。所有模型都定性地一致地预测π/π/π+比是高密度对称能量的敏感探针,尤其是束能量接近介子产生阈值时。然而,π〜?/π〜+比值的预测值仍然与模型密切相关,这主要是因为在重离子碰撞中对离子产生和重吸收动力学进行建模的复杂性,导致有关高密度行为的当前尚有争议的结论。通过将各种模型计算与可用的实验数据进行比较,得出核对称能量的分布。随着更多的π〜?/π〜+数据变得可用,并且对重离子反应中的离子动力学有了更深入的了解,诸如K + / K0之比,η介子和高能光子之类的更具穿透性的探针也正在出现。在几个机构进行了调查或计划。在这里,我们回顾了我们对约束重离子碰撞中核对称能量的高密度行为的社区努力的最新贡献。此外,简要介绍了一些世界范围内研究高密度对称能量的实验,包括HIRFL-CSR外部目标实验(CEE)。

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