Diego Tessainer, Antonio L. Maroto, Prado Martín-Moruno
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引用次数: 0
Abstract
We consider theories which break the invariance under diffeomorphisms (Diff)
down to transverse diffeomorphisms (TDiff) in the matter sector, consisting of
multiple scalar fields. In particular, we regard shift-symmetric models with
two free TDiff scalar fields in a flat Robertson-Walker spacetime and use the
perfect fluid approach to study their dynamics. As a consequence of the
symmetry breaking, an effective interaction between the fields is induced from
the conservation of the total energy-momentum tensor, without the necessity to
introduce any explicit interacting term in the Lagrangian. We study the
different single-field domination regimes and analyze the energy exchange
between the fields. Thereupon, we introduce an application of these models for
the description of interactions in the dark sector, and compare the theoretical
predictions of our model to observational data from Type Ia supernovae.
我们考虑的理论打破了差分变形(Diff)下的不变性,在物质扇区中变成了横向差分变形(TDiff),由多个标量场组成。特别是,我们考虑了在平坦的罗伯逊-沃克时空中具有两个自由 TDiff 标量场的位移对称模型,并使用完全流体方法来研究它们的动力学。由于对称性破缺,场之间的有效相互作用是由总能量张量守恒引起的,而无需在拉格朗日中引入任何显式相互作用项。我们研究了不同的单场支配状态,并分析了场之间的能量交换。然后,我们介绍了这些模型在描述暗部门相互作用中的应用,并将我们模型的理论预测与 Ia 型超新星的观测数据进行了比较。