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首页> 外文期刊>Journal of Cosmology and Astroparticle Physics >Constraining the Asymptotically Safe cosmology: cosmic acceleration without dark energy
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Constraining the Asymptotically Safe cosmology: cosmic acceleration without dark energy

机译:约束渐近安全宇宙学:没有暗能的宇宙加速度

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A recently proposed Asymptotically Safe cosmology provides an elegant mechanism towards understanding the nature of dark energy and its associated cosmic coincidence problem. The underlying idea is that the accelerated expansion of the universe can occur due to infrared quantum gravity modifications at intermediate astrophysical scales (galaxies or galaxy clusters) which produce local anti-gravity sources. In this cosmological model no extra unproven energy scales or fine-tuning are used. In this study the Asymptotically Safe model is confronted with the most recent observational data from low-redshift probes, namely measurements of the Hubble parameter, standard candles (Pantheon SnIa, Quasi-stellar objects), Baryonic Acoustic Oscillations (BAOs) and high redshift probes (CMB shift parameters). Performing an overall likelihood analysis we constrain the free parameters of the model and we test its performance against the concordance model (flat ΛCDM) utilizing a large family of information criteria. We find that the Asymptotically Safe model is statistically equivalent with ΛCDM, hence it can be seen as a viable and very efficient cosmological alternative.
机译:最近提出的渐近宇宙宇宙学提供了理解黑暗能量的性质及其相关的宇宙巧合问题的优雅机制。潜在的想法是,由于在产生局部抗重力源的中间天体物理鳞片(星系或半腹簇)的红外量子重力修饰,可以发生宇宙的加速扩张。在该宇宙模型中,不使用额外的未经证实的能量尺度或微调。在这项研究中,渐近安全模型面临来自低红移探头的最​​新观测数据,即哈勃参数的测量,标准蜡烛(万神殿Snia,准恒星物体),缩拱声振荡(BAOS)和高射频探头(CMB换档参数)。执行整体似然分析,我们限制了模型的自由参数,并利用大型信息标准对其对协调模型(扁平λcdm)的性能进行测试。我们发现渐近安全的模型与λcdm统计上相同,因此它可以被视为可行且非常有效的宇宙学替代方案。

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