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Quarkonium at finite temperature: towards realistic phenomenology from first principles

机译:有限温度的Quarkonium:从第一个原则迈向现实现象学

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A bstract We present the finite temperature spectra of both bottomonium and charmonium, obtained from a consistent lattice QCD based potential picture. Starting point is the complex in-medium potential extracted on full QCD lattices with dynamical u,d and s quarks, generated by the HotQCD collaboration. Using the generalized Gauss law approach, vetted in a previous study on quenched QCD, we fit Re[ V ] with a single temperature dependent parameter m ~( D ), the Debye screening mass, and confirm the up to now tentative values of Im[ V ]. The obtained analytic expression for the complex potential allows us to compute quarkonium spectral functions by solving an appropriate Schr?dinger equation. These spectra exhibit thermal widths, which are free from the resolution artifacts that plague direct reconstructions from Euclidean correlators using Bayesian methods. In the present adiabatic setting, we find clear evidence for sequential melting and derive melting temperatures for the different bound states. Quarkonium is gradually weakened by both screening (Re[ V ]) and scattering (Im[ V ]) effects that in combination lead to a shift of their in-medium spectral features to smaller frequencies, contrary to the mass gain of elementary particles at finite temperature.
机译:Bstract我们介绍了从基于格子QCD的一致晶格QCD的潜在图像获得的底部和羟镝的有限温度光谱。起始点是在全QCD格子上提取的中型中势,具有动态U,D和S夸克,由HotQCD协作产生。使用广泛的高斯法律方法,在先前的淬火QCD研究中审查,我们用单一温度依赖参数M〜(d),脱义筛选质量,并确认现在的IM [ v]。所获得的复杂电位的分析表达允许我们通过求解适当的SCINGRα·杜克拉·方程来计算Quarkonium光谱功能。这些光谱表现出热宽,其不含使用贝叶斯方法从Euclidean相关器中扰乱的分辨率伪影。在目前的绝热环境中,我们发现了不同束缚态的序列熔化和熔化温度的明确证据。 Quarkonium通过筛选(Re [V])和散射(IM [V])效果逐渐削弱,即在组合导致其中型光谱特征到较小频率的偏移,与有限颗粒的质量增益相反温度。

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