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On the equivalence of Λ ( t ) and gravitationally induced particle production cosmologies

机译:关于 Λ t )< / mml:mo> 和引力引起的粒子产生宇宙学

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摘要

The correspondence between cosmological models powered by a decaying vacuum energy density and gravitationally induced particle production is investigated. Although being physically different in the physics behind them we show that both classes of cosmologies under certain conditions can exhibit the same dynamic and thermodynamic behavior. Our method is applied to obtain three specific models that may be described either asΛ(t)CDM or gravitationally induced particle creation. In the point of view of particle production models, such cosmologies can be interpreted as a kind of one-component unification of the dark sector. By using current type Ia supernovae data, recent estimates of the cosmic microwave background shift parameter and baryon acoustic oscillations measurements we also perform a statistical analysis to test the observational viability within the two equivalent classes of models and we obtain the best-fit of the free parameters. By adopting the Akaike information criterion we also determine the rank of the models considered here. Finally, the particle production cosmologies (and the associated decayingΛ(t)-models) are modeled in the framework of field theory by a phenomenological scalar field model.
机译:研究了由衰减的真空能量密度提供动力的宇宙学模型与重力引起的粒子产生之间的对应关系。尽管它们背后的物理学在物理上有所不同,但我们表明,在某些条件下,这两类宇宙学都可以表现出相同的动力学和热力学行为。我们的方法用于获得三个特定的模型,这些模型可以描述为Λ(t)CDM或重力诱导的粒子生成。从粒子产生模型的角度来看,这种宇宙学可以解释为暗区的一种单组分统一。通过使用当前的Ia类超新星数据,宇宙微波背景偏移参数和重子声振荡测量的最新估计值,我们还进行了统计分析,以测试两类等效模型内的观测生存力,并获得了自由度的最佳拟合参数。通过采用Akaike信息准则,我们还可以确定此处考虑的模型的等级。最后,在粒子论的框架内,通过现象学的标量场模型对粒子产生宇宙学(以及相关的衰减Λ(t)-模型)进行了建模。

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