Thermal modifications of quarkonia and heavy quark diffusion from a comparison of continuum-extrapolated lattice results to perturbative QCD

Anna-Lena Lorenz, H. Ding, O. Kaczmarek, H. Ohno, H. Sandmeyer, Hai-Tao Shu
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引用次数: 3

Abstract

We investigate the in-medium modifications of heavy quarkonia in the vector channel and the heavy quark diffusion coefficient by comparing Euclidean correlators from the lattice to a perturbative spectral function. On the lattice side, we work with continuum extrapolated data from four different large and fine lattices with Clover-improved Wilson fermions in the quenched approximation at five temperatures (0.75, 1.1, 1.3, 1.5 and 2.25$T_c$). On the perturbative side, we use a combination of pNRQCD and vacuum asymptotics to describe the spectral function. After accounting for systematic errors, we obtain a spectral function that is suited to describe the bound state region. This spectral function describes charmonium well without a resonance peak at any of our analyzed temperatures above $T_c$, while we observe a thermally broadened resonance peak for bottomonium that is only melted at our largest temperature, $2.25T_c$. For the transport contribution we assume a Breit-Wigner shaped peak and find that the drag coefficient of charm quarks is larger than that of bottom quarks.
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从连续外推晶格结果与微扰QCD比较夸克和重夸克扩散的热修正
我们通过比较从晶格到微扰谱函数的欧几里得相关器,研究了重夸克在矢量通道和重夸克扩散系数中的介质修正。在晶格方面,我们在五种温度(0.75,1.1,1.3,1.5和2.25$T_c$)的淬火近似下,使用clover改进的Wilson费米子从四个不同的大晶格和细晶格中连续统外推数据。在微扰方面,我们使用pNRQCD和真空渐近的组合来描述谱函数。在考虑系统误差后,我们得到了一个适合描述束缚态区域的谱函数。这个光谱函数很好地描述了在我们分析的温度高于$T_c$时没有共振峰的charmonium,而我们观察到只有在我们的最高温度$2.25T_c$下才熔化的bottomonium的热增宽共振峰。对于输运贡献,我们假设一个bret - wigner形峰,并发现粲夸克的阻力系数大于底夸克的阻力系数。
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