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首页> 外文期刊>The European Physical Journal, A. Hadrons and Nuclei >Bottomonia in the quark-gluon plasma and their production at RHIC and LHC
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Bottomonia in the quark-gluon plasma and their production at RHIC and LHC

机译:夸克-胶子血浆中的Bottomonia及其在RHIC和LHC中的产生

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摘要

We study the production of bottomonium states in heavy-ion reactions at collider energies available at RHIC and LHC. We employ an earlier constructed rate equation approach which accounts for both suppression and regeneration mechanisms in the quark-gluon plasma (QGP) and hadronization phases of the evolving thermal medium. Our previous predictions utilizing two limiting cases of strong and weak bottomonium binding in the QGP are updated by i) checking the compatibility of the pertinent spectral functions with lattice-QCD results for euclidean correlators, ii) adapting the initial conditions of the rate equation by updating bottom-related input cross-sections and the charged-particle multiplicity of the fireball, and iii) converting our calculations into observables as recently measured by the STAR and CMS experiments. Our main findings are a preference for strong Υ binding as well as a significant regeneration component at the LHC.
机译:我们研究了在RHIC和LHC的对撞机能量下重离子反应中bottom态的产生。我们采用了一种较早构建的速率方程方法,该方法解决了夸克-胶子等离子体(QGP)和不断发展的热介质的强子化阶段中的抑制和再生机理。我们以前的预测利用QGP中强和弱的bottom键结合的两种极限情况通过以下方式更新:i)检查相关光谱函数与欧氏相关子的晶格QCD结果的相容性; ii)通过更新来调整速率方程的初始条件底部相关的输入横截面和火球的带电粒子多样性,并且iii)将我们的计算结果转换为可观测值,这是最近通过STAR和CMS实验测得的。我们的主要发现是对LHC的强Υ结合以及重要的再生成分的偏爱。

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