论文标题

各向异性夸克 - 格鲁隆等离子体中复杂的夸克潜力 - 静态和动力学

The complex heavy-quark potential in an anisotropic quark-gluon plasma -- Statics and dynamics

论文作者

Dong, Lihua, Guo, Yun, Islam, Ajaharul, Rothkopf, Alexander, Strickland, Michael

论文摘要

我们将各向同性QCD等离子体从各向异性质量概括为各向异性的QCD等离子体概括为QCD等离子体,从而用各向异性筛选质量取代Debye质量$ M_D $,这取决于夸克对的对准方向而言。这种依赖性质量是通过将潜在模型中的扰动贡献与在硬热环重新摄动理论中获得的确切结果相匹配来确定的。所得潜在模型的一个优点是,可以通过使用我们先前的工作中提出的一组角度平均筛选质量来有效地描述其角度依赖性。因此,可以通过将各向异性筛选质量更改为相应的角度平均的一维schrödinger方程,并通过将各向异性筛选质量更改为相应的角度,并重现低较低Quarkonium结合状态的完整三维结果,并衰减的宽度宽度很高。最后,转向动力学,我们证明了一维有效电位可以准确描述使用完整的三维各向异性电位获得的真空重叠的时间演化。这包括分裂不同的P波极化。

We generalize a complex heavy-quark potential model from an isotropic QCD plasma to an anisotropic one by replacing the Debye mass $m_D$ with an anisotropic screening mass depending on the quark pair alignment with respect to the direction of anisotropy. Such an angle-dependent mass is determined by matching the perturbative contributions in the potential model to the exact result obtained in the Hard-Thermal-Loop resummed perturbation theory. An advantage of the resulting potential model is that its angular dependence can be effectively described by using a set of angle-averaged screening masses as proposed in our previous work. Consequently, one could solve a one-dimensional Schrödinger equation with a potential model built by changing the anisotropic screening masses into the corresponding angle-averaged ones, and reproduce the full three-dimensional results for the binding energies and decay widths of low-lying quarkonium bound states to very high accuracy. Finally, turning to dynamics, we demonstrate that the one-dimensional effective potential can accurately describe the time evolution of the vacuum overlaps obtained using the full three-dimensional anisotropic potential. This includes the splitting of different p-wave polarizations.

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