论文标题
对重子对光环质量功能,偏见和群集宇宙学的影响
On the impact of baryons on the halo mass function, bias, and cluster cosmology
论文作者
论文摘要
发光物质会产生非常有活力的事件,例如活跃的银河核和超新星爆炸,会显着影响星系簇的内部区域。尽管与其他系统学相比,重型物理学对簇统计的影响目前的不确定性是亚抑制剂,但随着高质量数据的数量增长迅速,情况可能会很快改变,敦促社区将理论上的系统不确定性保持在不断增长的统计精度以下。在本文中,我们使用宇宙流体动力学模拟的磁性套件研究了重子对星系簇的影响及其对簇群体应用的影响。我们表明,当包括纯N体效应时,可以根据纯N体的质量的变化来重铸,重铸对光环质量功能的影响。光环质量功能和光晕偏置仅间接影响。最后,我们证明,忽略对光晕质量功能和偏见的忽视将显着改变宇宙学参数的推论,从高敏感性的下一代星系簇调查。
Luminous matter produces very energetic events, such as active galactic nuclei and supernova explosions, that significantly affect the internal regions of galaxy clusters. Although the current uncertainty in the effect of baryonic physics on cluster statistics is subdominant as compared to other systematics, the picture is likely to change soon as the amount of high-quality data is growing fast, urging the community to keep theoretical systematic uncertainties below the ever-growing statistical precision. In this paper, we study the effect of baryons on galaxy clusters, and their impact on the cosmological applications of clusters, using the Magneticum suite of cosmological hydrodynamical simulations. We show that the impact of baryons on the halo mass function can be recast in terms on a variation of the mass of the halos simulated with pure N-body, when baryonic effects are included. The halo mass function and halo bias are only indirectly affected. Finally, we demonstrate that neglecting baryonic effects on halos mass function and bias would significantly alter the inference of cosmological parameters from high-sensitivity next-generations surveys of galaxy clusters.