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Observational constraints on the unified dark matter and dark energy model based on the quark bag model

机译:基于夸克袋模型的统一暗物质和暗能量模型的观测约束

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In this work we investigate if a small fraction of quarks and gluons, which escaped hadronization and survived as a uniformly spread perfect fluid, can play the role of both dark matter and dark energy. This fluid, as developed in [1], is characterized by two main parameters: β , related to the amount of quarks and gluons which act as dark matter; and γ , acting as the cosmological constant. We explore the feasibility of this model at cosmological scales using data from type Ia Supernovae (SNeIa), Long Gamma-Ray Bursts (LGRB) and direct observational Hubble data. We find that: (i) in general, β cannot be constrained by SNeIa data nor by LGRB or H ( z ) data; (ii) γ can be constrained quite well by all three data sets, contributing with ≈ 78 % to the energy–matter content; (iii) when a strong prior on (only) baryonic matter is assumed, the two parameters of the model are constrained successfully.
机译:在这项工作中,我们调查了逃逸强子化作用并作为均匀散布的完美流体而幸存的一小批夸克和胶子能否同时发挥暗物质和暗能量的作用。如[1]所述,这种流体的特征在于两个主要参数:β,与作为暗物质的夸克和胶子的数量有关;和γ,作为宇宙常数。我们使用Ia型超新星(SNeIa),长伽玛射线暴(LGRB)和直接观测哈勃数据的数据,在宇宙尺度上探索该模型的可行性。我们发现:(i)一般而言,β不能受到SNeIa数据或LGRB或H(z)数据的约束; (ii)γ可以被所有三个数据集很好地约束,对能量物质含量的贡献约为78%; (iii)当假定(仅)重质物质先验强时,模型的两个参数被成功约束。

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