S_8$张力的反馈解对星系群和星系团重子分数的影响

Jaime Salcido, Ian G. McCarthy
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引用次数: 0

摘要

最近的大尺度结构(LSS)探测发现,与标准宇宙学模型的预测值相比,$S_8$的值持续存在紧张关系。这种张力可能表明需要标准模型之外的新物理,但要避免偏差,就必须准确描述重子效应的特征。尽管一些研究表明重子效应太小,不足以解决这一矛盾,但另一些研究提出,更积极的反馈机制可以调和宇宙微波背景(CMB)测量与低红移 LSS 观测之间的差异。在本文中,我们研究了重子效应在缓解 $S_8$ 张力中的作用。我们扩展了SP(k)模型(Salcido等人,2023年),该模型是在数百次宇宙学流体力学模拟中训练出来的,用于将物质能量谱的压制映射到星团和星簇中的重子分数上,从而预测在给定的$P(k)$压制下所需的重子分数。我们的研究结果表明,在将宇宙学参数固定为普朗克类宇宙学的同时,将重子效应边际化的研究预测出了强烈的$P(k)$抑制和重子分数,而这些预测值远远低于现有的星系群和星系团的低重子预算估计值。与此相反,大多数对宇宙学参数和重子效应进行边际化的研究意味着重子分数与观测结果一致,但S_8$的值低于从CMB推断的值。除非观测到的重子分数偏高了几倍,否则这些结果表明,为了解决S_8$张力问题,需要一种超越重子物理学的机制来改变或减缓宇宙中结构的增长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implications of feedback solutions to the $S_8$ tension for the baryon fractions of galaxy groups and clusters
Recent large-scale structure (LSS) surveys have revealed a persistent tension in the value of $S_8$ compared to predictions from the standard cosmological model. This tension may suggest the need for new physics beyond the standard model, but an accurate characterisation of baryonic effects is essential to avoid biases. Although some studies indicate that baryonic effects are too small to resolve this tension, others propose that more aggressive feedback mechanisms could reconcile differences between cosmic microwave background (CMB) measurements and low-redshift LSS observations. In this paper, we investigate the role of baryonic effects in alleviating the $S_8$ tension. We extend the SP(k) model (Salcido et al. 2023), which was trained on hundreds of cosmological hydrodynamical simulations to map the suppression of the matter power spectrum to the baryon fraction in groups and clusters, to predict the required baryon fraction for a given $P(k)$ suppression. We then compare predictions from recent cosmic shear (weak lensing) analyses with the latest baryon budget measurements from X-ray and weak gravitational lensing studies. Our findings show that studies marginalising over baryonic effects while fixing cosmological parameters to a Planck-like cosmology predict strong $P(k)$ suppression and baryon fractions that are much lower than existing low-redshift baryon budget estimates of galaxy groups and clusters. Conversely, most studies that marginalise over both cosmological parameters and baryonic effects imply baryon fractions that are consistent with observations but lower values of $S_8$ than inferred from the CMB. Unless the observed baryon fractions are biased high by a factor of several, these results suggest that a mechanism beyond baryonic physics alone is required to modify or slow down the growth of structure in the universe in order to resolve the $S_8$ tension.
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