Restoring cosmological concordance with axion-like early dark energy and dark matter characterized by a constant equation of state?

IF 2.4 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY
Yan-Hong Yao and Xin-He Meng
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Abstract

The Hubble tension persists as a challenge in cosmology. Even early dark energy (EDE) models, initially considered the most promising for alleviating the Hubble tension, fall short of addressing the issue without exacerbating other tensions, such as the S8 tension. Considering that a negative dark matter (DM) equation of state (EoS) parameter is conducive to reduce the value of the σ8 parameter, we extend the axion-like EDE model in this paper by replacing the cold dark matter (CDM) with DM characterized by a constant EoS wdm (referred to as WDM hereafter). We then impose constraints on this axion-like EDE extension model, along with three other models: the axion-like EDE model, ΛWDM, and ΛCDM. These constraints are derived from a comprehensive analysis incorporating data from the Planck 2018 cosmic microwave background, baryon acoustic oscillations, and the Pantheon compilation, as well as a prior on H0 (i.e. H0 = 73.04 ± 1.04, based on the latest local measurement by Riess et al) and a Gaussianized prior on S8 (i.e. S8 = 0.766 ± 0.017, determined through the joint analysis of KID1000+BOSS+2dLenS). We find that although the new model maintains the ability to alleviate the Hubble tension to ∼1.4σ, it still exacerbates the S8 tension to a level similar to that of the axion-like EDE model.
以恒定状态方程为特征的类轴心早期暗能量和暗物质能否恢复宇宙学一致性?
哈勃张力一直是宇宙学的难题。即使是最初被认为最有希望缓解哈勃张力的早期暗能量(EDE)模型,也无法在不加剧其他张力(如 S8 张力)的情况下解决这个问题。考虑到负暗物质(DM)状态方程(EoS)参数有利于降低σ8参数值,我们在本文中扩展了类轴子EDE模型,用具有恒定EoS wdm(以下简称WDM)特征的DM取代了冷暗物质(CDM)。然后,我们对这个类轴子EDE扩展模型以及其他三个模型施加了约束:类轴子EDE模型、ΛWDM和ΛCDM。这些约束是通过综合分析普朗克 2018 宇宙微波背景数据、重子声振荡数据和 Pantheon 汇编数据,以及 H0 的先验值(即 H0 = 73.04 ± 1.04,基于 Riess 等人的最新本地测量)和 S8 的高斯化先验值(即 S8 = 0.766 ± 0.017,通过 KID1000+BOSS+2dLenS 的联合分析确定)得出的。我们发现,尽管新模型保持了将哈勃张力缓解到 ∼1.4σ的能力,但它仍然将 S8 张力加剧到了类似轴子的 EDE 模型的水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Communications in Theoretical Physics
Communications in Theoretical Physics 物理-物理:综合
CiteScore
5.20
自引率
3.20%
发文量
6110
审稿时长
4.2 months
期刊介绍: Communications in Theoretical Physics is devoted to reporting important new developments in the area of theoretical physics. Papers cover the fields of: mathematical physics quantum physics and quantum information particle physics and quantum field theory nuclear physics gravitation theory, astrophysics and cosmology atomic, molecular, optics (AMO) and plasma physics, chemical physics statistical physics, soft matter and biophysics condensed matter theory others Certain new interdisciplinary subjects are also incorporated.
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