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Quantum Yang–Mills Dark Energy

机译:量子杨-米尔斯暗能量

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In this short review, I discuss basic qualitative characteristics of quantum non-Abelian gauge dynamics in the non-stationary background of the expanding Universe in the framework of the standard Einstein–Yang–Mills formulation. A brief outlook of existing studies of cosmological Yang–Mills fields and their properties will be given. Quantum effects have a profound impact on the gauge field-driven cosmological evolution. In particular, a dynamical formation of the spatially-homogeneous and isotropic gauge field condensate may be responsible for both early and late-time acceleration, as well as for dynamical compensation of non-perturbative quantum vacua contributions to the ground state of the Universe. The main properties of such a condensate in the effective QCD theory at the flat Friedmann–Lemaítre–Robertson–Walker (FLRW) background will be discussed within and beyond perturbation theory. Finally, a phenomenologically consistent dark energy can be induced dynamically as a remnant of the QCD vacua compensation arising from leading-order graviton-mediated corrections to the QCD ground state.
机译:在这篇简短的评论中,我将讨论在标准爱因斯坦-杨格-米尔斯公式框架下,扩展宇宙的非平稳背景下量子非阿贝尔规范动力学的基本定性特征。将对现有的宇宙学Yang-Mills场及其性质进行简要的介绍。量子效应对规范场驱动的宇宙学演化具有深远的影响。尤其是,空间均匀且各向同性的规范凝结水的动态形成可能会导致早期和后期加速,以及对非扰动量子真空对宇宙基态贡献的动态补偿。在有效的QCD理论中,在平坦的Friedmann-Lemaítre-Robertson-Walker(FLRW)背景下,这种冷凝物的主要特性将在微扰理论之内和之外进行讨论。最终,现象学上一致的暗能量可以被动态地感应出来,作为QCD真空补偿的残余,该补偿是由前导引力子介导的对QCD基态的校正产生的。

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