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SU(2) Quantum Yang–Mills Thermodynamics: Some Theory and Some Applications

机译:SU(2)量子杨-米尔斯热力学:一些理论和一些应用

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In the first part of this talk, we review some prerequisites for and essential arguments involved in the construction of the thermal-ground-state estimate underlying the deconfining phase in the thermodynamics of SU(2) Quantum Yang–Mills theory and how this structure supports its distinct excitations. The second part applies deconfining SU(2) Yang–Mills thermodynamics to the Cosmic Microwave Background in view of (i) a modified temperature-redshift relation with an interesting link to correlation-length criticality in the 3D Ising model, (ii) the implied minimal changes in the dark sector of the cosmological model, and (iii) best-fit parameter values of this model when confronted with the spectra of the angular two-point functions temperature-temperature (TT), temperature-E-mode-polarisation (TE), E-mode-polarisation-E-mode-polarisation (EE), excluding the low- l physics. The latter, which so far is treated in an incomplete way due to the omission of radiative effects, is addressed in passing.
机译:在本讲座的第一部分中,我们回顾了构造SU-(2)Quantum Yang-Mills理论热力学解限定相基础的热基态估计的一些先决条件和基本论点,以及该结构如何支持其独特的激励。第二部分针对(i)修改后的温度-红移关系与3D Ising模型中相关长度临界性的有趣联系,应用了SU(2)Yang-Mills热力学对宇宙微波背景的限定。宇宙学模型暗区的最小变化,以及(iii)面对角度两点函数的光谱时,该模型的最佳拟合参数值温度-温度(TT),温度-E-模式极化( TE),E-mode-polarization-E-mode-polarisation(EE),不包括低等物理技术。到目前为止,由于遗漏了辐射效应,对后者的处理还不完善。

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