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Assessing the viability of successful reconstruction of the dynamics of dark energy using varying fundamental couplings

机译:使用不同的基础耦合评估成功重建暗能量动力学的可行性

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We assess the viability of successful reconstruction of the evolution of the dark energy equation of state using varying fundamental couplings, such as the fine structure constant or the proton-to-electron mass ratio. We show that the same evolution of the dark energy equation of state parameter with cosmic time may be associated with arbitrary variations of the fundamental couplings. Various examples of models with the same (different) background evolution and different (the same) time variation of fundamental couplings are studied in the Letter. Although we demonstrate that, for a broad family of models, it is possible to redefine the scalar field in such a way that its dynamics is that of a standard quintessence scalar field, in general such redefinition leads to the breakdown of the linear relation between the scalar field and the variation of fundamental couplings. This implies that the assumption of a linear coupling is not sufficient to guarantee a successful reconstruction of the dark energy dynamics and consequently additional model dependent assumptions about the scalar field responsible for the dark energy need to be made.
机译:我们评估了使用各种基本耦合(例如精细结构常数或质子电子质量比)成功重建暗能量状态方程演化的可行性。我们表明,状态参数的暗能量方程随宇宙时间的相同演化可能与基本耦合的任意变化有关。在信中研究了具有相同(不同)背景演化和基本(偶合)时间变化的模型的各种示例。尽管我们证明了,对于一系列广泛的模型,可以重新定义标量场,使其动力学是标准的典型标量场,但通常,这种重新定义会导致标量场之间的线性关系破裂。标量场和基本耦合的变化。这意味着线性耦合的假设不足以保证暗能量动力学的成功重建,因此,需要对负责暗能量的标量场进行额外的模型依赖假设。

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