Effects of hadronic repulsive interactions on the fluctuations of conserved charges

Somenath Pal, G. Kadam, H. Mishra, A. Bhattacharyya
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引用次数: 2

Abstract

We investigate the effects of repulsive interaction between hadrons on the fluctuations of the conserved charges. We calculate the baryon,the electric charge and the strangeness susceptibilities within the ambit of hadron resonance gas model extended to include the short range repulsive interactions.The repulsive interactions are included through a mean-field approach where the single particle energy gets modified due to mean field interactions between hadrons proportional to the number density of hadrons.We assume different mean-field interactions for mesons and baryons. It is shown that the repulsive interactions play a very crucial role to describe hadronic matter near transition temperature. We also show that in order to consistently describe higher order conserved charge fluctuations mesonic repulsive interactions cannot be neglected. Further, we demonstrate that the repulsive interaction of baryons are essential to describe the lattice simulation results at finite baryonchemical potential for higher order fluctuations.
强子斥力相互作用对守恒电荷波动的影响
我们研究了强子间的排斥相互作用对守恒电荷波动的影响。我们计算了在强子共振气体模型扩展到包括短程排斥作用范围内的重子、电荷和奇异磁化率。排斥相互作用通过平均场方法包括,其中单个粒子能量由于与强子数量密度成比例的强子之间的平均场相互作用而得到修正。我们假设介子和重子的平均场相互作用不同。结果表明,排斥性相互作用对描述跃迁温度附近的强子物质起着至关重要的作用。我们还表明,为了一致地描述高阶守恒电荷波动,介子排斥相互作用不能被忽略。此外,我们证明了重子的排斥相互作用对于描述高阶波动的有限重子化学势的晶格模拟结果是必不可少的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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