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Deconfinement transition effects on cosmological parameters and primordial gravitational waves spectrum

机译:解构对宇宙学参数的转换效应和原始重力波谱

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The cosmological evolution can be described in terms of directly measurable cosmological scalar parameters (deceleration q, jerk j, snap s, etc...) constructed out of high order derivatives of the scale factor. Their behavior at the critical temperature of the quantum chromodynamics (QCD) phase transition in early universe could be a specific tool to study the transition, analogously to the fluctuations of conserved charges in QCD. We analyze the effect of the crossover transition from quarks and gluons to hadrons in early universe on the cosmological scalars and on the gravitational wave spectrum, by using the recent lattice QCD equation of state and including the electroweak degrees of freedom. Near the transition the cosmological parameters follow the behavior of QCD trace anomaly and of the speed of sound of the entire system. The effects of deconfinement turn out to be more relevant for the modification of the primordial spectrum of gravitational waves rather than for the evolution of the cosmological parameters. Our complete analysis, based on lattice QCD simulations and on the hadron resonance gas below the critical temperature, refines previous results.
机译:宇宙演化可以以直接测量宇宙标量参数来描述(减速Q,加加速度Ĵ,卡扣S,等...)的比例因子的高阶导数的构造出。他们在量子色动力学(QCD)阶段,早期宇宙过渡的临界温度的行为可能是学习的过渡,类似的QCD保守的费用波动的专用工具。我们分析从夸克和胶子的交叉过渡到强子在早期宇宙中的作用,对宇宙标量和对引力波的频谱,利用国家近期格子量子色动力学方程,包括弱电自由度。附近的过渡宇宙学参数遵循QCD痕迹的异常行为和整个系统的声音的速度。禁闭的效果变成是引力波而不是宇宙学参数演变的原始光谱的修改更相关。我们全面分析的基础上,格子量子色动力学模拟和强子共振气体低于临界温度,提炼先前的结果。

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