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Dissociation of heavy quarkonium in hot QCD medium in a quasiparticle model

机译:Quasiparticle模型中热QCD培养基中重QCARKIUM的解剖

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摘要

Following a recent work on the effective description of the equations of state for hot QCD obtained from a hard thermal loop expression for the gluon self-energy, in terms of the quasigluons and quasiquarks and antiquarks with respective effective fugacities, the dissociation process of heavy quarkonium in hot QCD medium has been investigated. This has been done by investigating the medium modification to a heavy quark potential. The medium-modified potential has a quite different form (a long-range Coulomb tail in addition to the usual Yukawa term) in contrast to the usual picture of Debye screening. The flavor dependence binding energies of the heavy quarkonia states and the dissociation temperature have been obtained by employing the Debye mass for pure gluonic and full QCD case computed employing the quasiparticle picture. Thus, estimated dissociation patterns of the charmonium and bottomonium states, considering Debye mass from different approaches in the pure gluonic case and full QCD, have shown good agreement with the other potential model studies.
机译:在最近有效地研究了从胶质QCD的状态方程的有效描述,从而从胶隆自我能量的硬质循环表达,就法Quaquols和Quasiquarks和古夸克具有相应的有效性脱力条件而言,重Quarkonium的解离过程在热QCD培养基中已经被调查。这是通过研究对重型夸克潜力的媒体修改来完成的。与德比筛选的通常图像相比,中等修改的潜力具有相当不同的形式(除了通常的Yukawa术语之外的远程库仑尾部)。通过采用采用Quasiplicle Picture计算的纯血糖和全QCD壳​​体的Deybye Mass,获得了重Quarkonia状态的风味依赖性结合能量和解离温度。因此,考虑到纯血液壳体和全QCD中的不同方法的德语群体的估计解离模式,与其他潜在模型研究表明良好的一致性。

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