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The gas depletion factor in galaxy clusters: implication from Atacama Cosmology Telescope Polarization experiment measurements

机译:Galaxy集群中的气体耗尽因子:Atacama宇宙学望远镜极化实验测量的含义

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The gas depletion factor $$gamma (z)$$ γ ( z ) , i.e., the average ratio of the gas mass fraction to the cosmic mean baryon fraction of galaxy clusters, plays a very important role in the cosmological application of the gas mass fraction measurements. In this paper, using the newest catalog of 182 galaxy clusters detected by the Atacama Cosmology Telescope (ACT) Polarization experiment, we investigate the possible redshift evolution of $$gamma (z)$$ γ ( z ) through a new cosmology-independent method. The method is based on non-parametric reconstruction using the measurements of Hubble parameters from cosmic chronometers. Unlike hydrodynamical simulations suggesting constant depletion factor, our results reveal the trend of $$gamma (z)$$ γ ( z ) decreasing with redshift. This result is supported by a parametric model fit as well as by calculations on the reduced ACTPol sample and on the alternative sample of 91 SZ clusters reported earlier in ACT compilation. Discussion of possible systematic effects leaves an open question about validity of the empirical relation $$M_{tot}$$ M tot – $$f_{gas}$$ f gas obtained on very close clusters. These results might pave the way to explore the hot gas fraction within large radii of galaxy clusters as well as its possible evolution with redshift, which should be studied further on larger galaxy cluster samples in the upcoming X-ray/SZ cluster surveys.
机译:气体耗尽因子$$ Gamma(z)$$γ(z),即气体质量分数与宇宙平均成分的平均比例的银河系中的平均比率在气体的宇宙学应用中起着非常重要的作用质量分数测量。在本文中,使用Atacama宇宙学望远镜(ACT)极化实验检测到的182个星系集群的最新目录,我们通过新的宇宙学无关地研究$$ Gamma(z)$$γ(z)的可能的红移演进方法。该方法基于使用来自CoSmic Chronometers的Hubble参数的测量值的非参数重建。与建议持续耗尽因子的流体动力模拟不同,我们的结果揭示了Redshift率降低了$$ Gamma(Z)$$γ(Z)的趋势。该结果由参数模型适合支持以及通过减少的ACTPOL样本计算,并且在ACT编译之前报告的91个SZ集群的替代样本。讨论可能的系统效应留下了关于实证关系的有效性的开放问题$$ M_ {TOT} $$ m tot - $$ f_ {gas}在非常紧密的群集中获得的天然气。这些结果可能铺平了探索Galaxy集群的大半径内的热气体分数以及随着红移的可能演变,这应该在即将到来的X射线/ SZ群集调查中进一步研究较大的星系集群样本。

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