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Lattice quantum chromodynamics equation of state: A better differential method

机译:晶格量子色动力学方程的状态:一种更好的差分方法

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We propose a better differential method for the computation of the equation of state of QCD from lattice simulations. In contrast to the earlier differential method, our technique yields positive pressure for all temperatures including the temperatures in the transition region. Employing it on temporal lattices of 8, 10 and 12 sites and by extrapolating to zero lattice spacing we obtained the pressure, energy density, entropy density, specific heat and speed of sound in quenched QCD for 0.9 a‰¤ e?‘?/e?‘?c a‰¤ 3. At high temperatures comparisons of our results are made with those from the dimensional reduction approach and also with those from a conformal symmetric theory.
机译:我们提出了一种更好的差分方法,用于计算晶格仿真的QCD状态方程。与较早的差分方法相比,我们的技术对于包括过渡区域中的温度的所有温度产生正压力。在8,10和12个位点的时间格子上使用它,通过推断到零格间距,我们获得了淬火QCD的压力,能量密度,熵密度,特定的热量和声音速度0.9 a‰eΔ' ?'?CA‰¤3.在高温下,我们的结果比较是由尺寸减少方法和来自保形对称理论的结果的结果进行的。

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