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Is there vacuum when there is mass? Vacuum and non-vacuum solutions for massive gravity

机译:有质量时有真空吗?重力式真空和非真空解决方案

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Massive gravity is a theory which has a tremendous amount of freedom to describe different cosmologies, but at the same time, the various solutions one encounters must fulfil some rather nontrivial constraints. Most of the freedom comes not from the Lagrangian, which contains only a small number of free parameters (typically three depending on counting conventions), but from the fact that one is in principle free to choose the reference metric almost arbitrarily - which effectively introduces a non-denumerable infinity of free parameters. In the current paper, we stress that although changing the reference metric would lead to a different cosmological model, this does not mean that the dynamics of the universe can be entirely divorced from its matter content. That is, while the choice of reference metric certainly influences the evolution of the physically observable foreground metric, the effect of matter cannot be neglected. Indeed the interplay between matter and geometry can be significantly changed in some specific models; effectively since the graviton would be able to curve the spacetime by itself, without the need of matter. Thus, even the set of vacuum solutions for massive gravity can have significant structure. In some cases, the effect of the reference metric could be so strong that no conceivable material content would be able to drastically affect the cosmological evolution. Dedicated to the memory of Professor Pedro F González-Díaz
机译:物质引力是一种具有极大自由度的理论,可以描述不同的宇宙学,但同时,人们所遇到的各种解决方案必须满足一些相当重要的约束。大多数自由不是来自拉格朗日法,拉格朗日法仅包含少量自由参数(通常是三个,具体取决于计数惯例),而是基于这样一个事实,即一个人原则上几乎可以任意选择参考度量,从而有效地引入了一个自由度。自由参数的不可数无穷大。在当前的论文中,我们强调,尽管更改参考度量会导致不同的宇宙学模型,但这并不意味着宇宙的动力学可以完全脱离其物质含量。也就是说,尽管参考度量的选择肯定会影响可物理观察到的前景度量的演变,但不能忽略物质的影响。确实,在某些特定模型中,物质与几何之间的相互作用可以显着改变。因为引力子将能够自行弯曲时空,而无需物质。因此,即使是用于大重力的真空解决方案集也可以具有显着的结构。在某些情况下,参考度量的影响可能是如此之强,以至于没有任何可能的物质含量能够极大地影响宇宙演化。致力于纪念Pedro FGonzález-Díaz教授

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