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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Probing dark energy with braneworld cosmology in the light of recent cosmological data
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Probing dark energy with braneworld cosmology in the light of recent cosmological data

机译:近期宇宙学数据探测Braneworld宇宙的黑能量

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摘要

We investigate a brane model based on Randall-Sundrum scenarios with a generic dark energy component. The latter drives the accelerated expansion at late-times of the universe. In this scheme, extra terms are added into Einstein Field equations that are propagated to the Friedmann equations. To constrain the dark energy equation-of-state (EoS) and the brane tension we use observational data with different energy levels (Supernovae Type Ia, H(z), baryon acoustic oscillations, and cosmic microwave background radiation distance, and a joint analysis) in a background cosmology. Beside EoS being consistent with a cosmological constant at the 3 sigma confidence level for each dataset, the baryon acoustic oscillations probe favors an EoS consistent with a quintessence dark energy. Although we found different lower limit bounds on the brane tension for each dataset, being the most restricted for CMB, there is not enough evidence of modifications in the cosmological evolution of the universe by the existence of an extra dimension within observational uncertainties. Nevertheless, these new bounds are complementary to those obtained by other probes like table-top experiments, Big Bang Nucleosynthesis, and stellar dynamics. Our results show that a further test of the braneworld model with appropriate correction terms or a profound analysis with perturbations, may be needed to improve the constraints provided by the current data.
机译:我们研究了基于Randall-undrum情景的Brane模型,具有通用的暗能组件。后者推动了宇宙的延迟时期的加速扩张。在该方案中,额外的术语被添加到传播到Friedmann方程的Einstein字段方程中。为了约束暗能量方程(EOS)和Brane张力,我们使用具有不同能量水平的观测数据(超新型IA,H(Z),Baryon声学振荡和宇宙微波背景辐射距离,以及关节分析)在背景宇宙中。除了在每个数据集的3个Sigma置信水平的宇宙学常量符合宇宙学常数之前,Baryon声学振荡探头有利于eos与Quintessence黑能量一致。虽然我们在每个数据集中发现了不同的下限范围,但对于CMB最受限制的限制,宇宙的宇宙学演变证据是在观察不确定性内的额外尺寸存在的宇宙学演变的修改。然而,这些新的界限与其他探针如桌面实验,大爆炸核酸合成和恒星动力学获得的那些互补。我们的结果表明,可能需要通过适当的校正术语或利用扰动进行深度分析,进一步测试BraneWorld模型,以改善当前数据提供的约束。

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