论文标题

改进的方法来实验确定重子碰撞中的中等效应

Improved method for the experimental determination of in-medium effects from heavy-ion collisions

论文作者

Pais, Helena, Bougault, Rémi, Gulminelli, Francesca, Providência, Constança, Bonnet, Eric, Borderie, Bernard, Chbihi, Abdelouahad, Frankland, John D., Galichet, Emmanuelle, Gruyer, Diégo, Henri, Maxime, Neindre, Nicolas Le, Lopez, Olivier, Manduci, Loredana, Pârlog, Marian, Verde, Giuseppe

论文摘要

使用从最近发表的(Xe $+$ SN)重离子数据的分析评估的化学平衡常数确定了具有核和恒星物质的光簇的状态方程,对应于三个具有发射源的同位素含量不同的反应。测量的多重性用于提取热力学特性,分析中包括对簇的理想气体内部分区功能的中等校正。这种中等内部校正及其各自的不确定性是通过贝叶斯分析来计算的,其独特的假设是,给定样品中的不同核种必须对应于扩展来源密度的唯一共同值。测试了用于校正的不同参数集,并且还解决了簇半径对热力学和化学平衡常数的影响。结果表明,所获得的平衡常数几乎与分析系统的同胞含量无关。最后,与相对论均值场模型的比较证明,数据与标量$σ$ -Meson耦合的通用中校正是一致的。获得的值为$ g_s/g_s^0 = 0.92 \ pm 0.02 $,大于先前研究中未在数据分析中不包括中等效应的研究中获得的值。该结果意味着对簇的结合能产生的影响较小,因此,熔化密度较大,并且在超新星物质中的簇贡献增加。

The equation of state with light clusters for nuclear and stellar matter is determined using chemical equilibrium constants evaluated from the analysis of the recently published (Xe$+$Sn) heavy ion data, corresponding to three reactions with different isotopic contents of the emission source. The measured multiplicities are used to extract the thermodynamic properties, and an in-medium correction to the ideal gas internal partition function of the clusters is included in the analysis. This in-medium correction and its respective uncertainty are calculated via a Bayesian analysis, with the unique hypothesis that the different nuclear species in a given sample must correspond to a unique common value for the density of the expanding source. Different parameter sets for the correction are tested, and the effect of the radius of the clusters on the thermodynamics and on the chemical equilibrium constants is also addressed. It is shown that the equilibrium constants obtained are almost independent of the isospin content of the analysed systems. Finally, a comparison with a relativistic mean field model proves that data are consistent with a universal in-medium correction of the scalar $σ$-meson coupling for nucleons bound in clusters. The obtained value, $g_s/g_s^0 = 0.92 \pm 0.02$, is larger than that obtained in a previous study not including in-medium effects in the data analysis. This result implies a smaller effect on the binding energy of the clusters and, as a consequence, larger melting densities, and an increased cluster contribution in supernova matter.

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