分类主样本解释的两种动态情景。

IF 2 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY
Entropy Pub Date : 2025-08-24 DOI:10.3390/e27090895
Giovanni Montani, Elisa Fazzari, Nakia Carlevaro, Maria Giovanna Dainotti
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引用次数: 0

摘要

我们分析了两种不同的宇宙后期动力学情景,导致哈勃参数偏离ΛCDM,主要是由于存在一个额外的自由参数,即暗能量参数。第一个模型包含一个纯粹的进化暗能量范式,这是由宇宙膨胀的引力场产生的结果。第二个模型还考虑了进化暗能量与物质组分的相互作用,这是通过它们的理想能量-动量张量之和守恒来假设的。然后通过有效运行的哈勃常数的诊断工具,将这两个模型与所谓的Ia型超新星“主样本”的分类数据进行比较。基于标准MCMC分析的比较程序导致了对暗能量-物质相互作用模型的明显偏好,该模型与一个幻影物质状态方程参数(非常接近-1)相关联,当数据自由时(它具有平坦的后验),它是固定的,以便重现有效运行的哈勃常数的幂律行为,这在文献中已经讨论过。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two Dynamical Scenarios for Binned Master Sample Interpretation.

We analyze two different scenarios for the late universe dynamics, resulting in Hubble parameters deviating from the ΛCDM, mainly for the presence of an additional free parameter, which is the dark energy parameter. The first model consists of a pure evolutionary dark energy paradigm as a result of its creation by the gravitational field of the expanding universe. The second model also considers an interaction of the evolutionary dark energy with the matter component, postulated via the conservation of the sum of their ideal energy-momentum tensors. These two models are then compared via the diagnostic tool of the effective running Hubble constant, with the binned data of the so-called "Master sample" for the Type Ia Supernovae. The comparison procedures, based on a standard MCMC analysis, lead to a clear preference of data for the dark energy-matter interaction model, which is associated with a phantom matter equation of state parameter (very close to -1) when, being left free by data (it has a flat posterior), it is fixed in order to reproduce the decreasing power-law behavior of the effective running Hubble constant, already discussed in the literature.

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来源期刊
Entropy
Entropy PHYSICS, MULTIDISCIPLINARY-
CiteScore
4.90
自引率
11.10%
发文量
1580
审稿时长
21.05 days
期刊介绍: Entropy (ISSN 1099-4300), an international and interdisciplinary journal of entropy and information studies, publishes reviews, regular research papers and short notes. Our aim is to encourage scientists to publish as much as possible their theoretical and experimental details. There is no restriction on the length of the papers. If there are computation and the experiment, the details must be provided so that the results can be reproduced.
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