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Constraints on cosmological parameters in power-law cosmology

机译:幂律宇宙学中宇宙学参数的约束

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In this paper, we examine observational constraints on the power law cosmology; essentially dependent on two parameters H-0 (Hubble constant) and q (deceleration parameter). We investigate the constraints on these parameters using the latest 28 points of H(z) data and 580 points of Union2.1 compilation data and, compare the results with the results of Lambda CDM. We also forecast constraints using a simulated data set for the future JDEM, supernovae survey. Our studies give better insight into power law cosmology than the earlier done analysis by Kumar [arXiv:1109.6924] indicating it tuning well with Union2.1 compilation data but not with H(z) data. However, the constraints obtained on < H-0 > and < q > i.e. H-0 average and q average using the simulated data set for the future JDEM, supernovae survey are found to be inconsistent with the values obtained from the H(z) and Union2.1 compilation data. We also perform the statefinder analysis and find that the power-law cosmological models approach the standard Lambda CDM model as q -> -1. Finally, we observe that although the power law cosmology explains several prominent features of evolution of the Universe, it fails in details.
机译:在本文中,我们研究了幂律宇宙学的观测约束;本质上取决于两个参数H-0(哈勃常数)和q(减速参数)。我们使用H(z)数据的最新28个点和Union2.1编译数据的580个点来研究这些参数的约束,并将结果与​​Lambda CDM的结果进行比较。我们还使用模拟数据集预测约束,以用于未来的JDEM超新星调查。与Kumar [arXiv:1109.6924]所做的较早分析相比,我们的研究提供了对幂定律宇宙学的更好洞察力,该分析表明,它可以与Union2.1编译数据很好地协调,而与H(z)数据则不能。但是,发现的约束,即使用未来JDEM的模拟数据集获得的H-0平均值和q平均值,与超新星测量结果不一致,这与从H(z)获得的值不一致和Union2.1编译数据。我们还执行状态查找器分析,发现幂律宇宙学模型逼近标准Lambda CDM模型,其q-> -1。最后,我们观察到,尽管幂律宇宙学解释了宇宙演化的几个突出特征,但在细节上却失败了。

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