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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >DE SITTER COSMOLOGY FROM GAUSS-BONNET DARK ENERGY WITH QUANTUM EFFECTS
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DE SITTER COSMOLOGY FROM GAUSS-BONNET DARK ENERGY WITH QUANTUM EFFECTS

机译:具有量子效应的高斯-盖内暗能量的DE SITTER宇宙学

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摘要

A Gauss-Bonnet dark energy model is considered. It is inspired by string/M-theory and also takes into account quantum contributions, which are introduced from a conformal quantum anomaly. The corresponding solutions for the Hubble rate, H, are studied starting from the Friedmann-Robertson-Walker equation. It is seen that, as a pure effect of the quantum contributions, a new solution for H exists in some region, which does not appear in the classical case. The behavior of all encountered solutions is studied with care, in particular the role played by the quantum correction term - which depends on the number of matter fields - in the stability of the solutions around its asymptotic value. It is argued that, contrary to what happens in the classical case, quantum effects remarkably lead to the realization of a de Sitter stage which corresponds to the inflation/dark energy stages, even for positive values of the f(0) constant (coupling of the field with the Gauss - Bonnet invariant).
机译:考虑了高斯-邦内暗能量模型。它受字符串/ M理论的启发,还考虑了从共形量子异常引入的量子贡献。从Friedmann-Robertson-Walker方程开始研究哈勃速率H的相应解。可以看出,作为量子贡献的纯效应,在某些区域存在H的新解,这在经典情况下是不会出现的。仔细研究所有遇到的解决方案的行为,尤其是量子校正项(取决于物质场的数量)在围绕其渐近值的稳定性方面所起的作用。有人认为,与经典情况相反,量子效应显着导致实现了de Sitter阶段,该阶段对应于膨胀/暗能量阶段,即使对于f(0)常数为正值(高斯-Bonnet不变的字段)。

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