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Dark energy as a relic of the vacuum-energy cancellation?

机译:暗能量是消除真空能量的遗物?

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摘要

We analyze the dynamical implications of an exponential Lagrangian density for the gravitational field, as referred to an isotropic FRW Universe. Then, we discuss the features of the generalized de Sitter phase, predicted by the new Friedmann equation. The existence of a consistent de Sitter solution arises only if the ratio between the vacuum energy density and that associated with the fundamental length of the theory acquires a tantalizing negative character. This choice allows us to explain the present Universe dark energy as a relic of the vacuum-energy cancellation due to the cosmological constant intrinsically contained in our scheme. The corresponding scalar-tensor description of the model is addressed too, and the behavior of the scalar field is analyzed for both negative and positive values of the cosmological term. In the first case, the Friedmann equation is studied both in vacuum and in the presence of external matter, while, in the second case, the quantum regime is approached in the framework of "repulsive" properties of the gravitational interaction, as described in recent issues in loop quantum cosmology. In particular, in the vacuum case, we find a pure non-Einsteinian effect, according to which a negative cosmological constant provides an accelerating de Sitter dynamics, in the region where the series expansion of the exponential term does not hold.
机译:我们分析了引力场的指数拉格朗日密度的动力学含义,即所谓的各向同性FRW宇宙。然后,我们讨论了由新的Friedmann方程预测的广义de Sitter相位的特征。只有当真空能量密度与理论的基本长度相关的真空能量密度之比具有诱人的负特性时,才会出现一致的de Sitter解。这种选择使我们能够将当前的宇宙暗能量解释为真空能量抵消的遗迹,这归因于我们的方案中固有的宇宙常数。模型的相应标量-张量描述也得到解决,并且针对宇宙学项的负值和正值分析了标量场的行为。在第一种情况下,在真空中和存在外部物质的情况下都研究了Friedmann方程,而在第二种情况下,如最近所述,在重力相互作用的“排斥”性质的框架内接近了量子态。循环量子宇宙学中的问题。特别是在真空情况下,我们发现纯非爱因斯坦效应,据此,负宇宙学常数在指数项的级数展开不成立的区域提供了加速的de Sitter动力学。

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