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Quasiparticle anisotropic hydrodynamics for central collisions

机译:中央碰撞的Quasiplicle各向异性流体动力学

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We use quasiparticle anisotropic hydrodynamics to study an azimuthally symmetric boost-invariant quarkgluon plasma including the effects of both shear and bulk viscosities. In quasiparticle anisotropic hydrodynamics, a single finite-temperature quasiparticle mass is introduced and fit to the lattice data in order to implement a realistic equation of state (EoS).We compare results obtained by using the quasiparticle method with the standard method of imposing the EoS in anisotropic hydrodynamics and viscous hydrodynamics. Using these three methods, we extract the primordial particle spectra, total number of charged particles, and average transverse momentum for various values of the shear viscosity to entropy density ratio η/s. We find that the three methods agree well for small shear viscosity to entropy density ratio η/s, but differ at large η/s,with the standard anisotropic EoS method showing suppressed production at low transverse-momentum compared with the other two methods considered. Finally, we demonstrate explicitly that, when using standard viscous hydrodynamics, the bulk-viscous correction can drive the primordial particle spectra negative at large pT . Such behavior is not seen in either anisotropic hydrodynamics approach, irrespective of the value of η/s.
机译:我们使用Quasiplicle各向异性流体动力学来研究方位称对称的促进夸大夸尔血清等离子体,包括剪切和堆积粘度的效果。在QuasiParticle各向异性流体动力学中,引入单个有限温度Quasiplicle质量并符合格子数据,以实现现实状态(EOS)的实际方程。我们通过使用Quasiparticle方法与施加EOS的标准方法进行比较获得的结果在各向异性流体动力学和粘性流体动力学中。使用这三种方法,我们提取原始粒子光谱,带电粒子的总数,以及用于剪切粘度的各种值的平均横向动量,以熵密度比η/ s。我们发现三种方法对小的剪切粘度吻合熵密度η/ s的差异很大,但在大η/ s的情况下不同,标准各向异性EOS方法显示出低横向动量的抑制产量与考虑的其他两种方法相比。最后,我们明确证明,当使用标准粘性流体动力学时,体粘性校正可以在大型Pt下驱动原始粒子光谱。在各向异性流体动力学方法中没有看到这种行为,无论η/ s的值如何。

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