论文标题
通过电子密度功率谱破坏重子颜色的变性
Breaking baryon-cosmology degeneracy with the electron density power spectrum
论文作者
论文摘要
星系中不确定的反馈过程会影响物质的分布,目前限制了弱透镜调查的功能。如果我们可以识别宇宙学统计数据,这些统计数据可与这些不确定性进行鲁棒性,或者通过其他方式限制这些影响,那么我们可以增强从弱透镜调查(例如DES,Euclid,Rubin Persvoratory和Roman Space望远镜)中的当前和即将发生的观察到的力量。在这项工作中,我们研究了电子密度自动功率光谱的潜力,作为宇宙学和重男性反馈的强大探针。我们使用骆驼项目中的一组(磁性)流体动力模拟,并进行理想化的分析,以预测一组有限的宇宙学和物理动机的天体物理参数上的统计不确定性。我们发现,可以通过运动量的Sunyaev-Zel'Dovich观察值或通过快速无线电爆发分散措施来测量的电子密度自动相关,可对$ω__{M} $以及中间量halos中的平均BARYON分数,$ \ bar {F bar {f} _ {通过获得有关相关系统不确定性的经验度量,我们发现这些约束在很大程度上与流体动力模拟中实施的重型反馈模型的差异相同。我们进一步讨论与分析相关的主要警告,并指出未来工作的可能方向。
Uncertain feedback processes in galaxies affect the distribution of matter, currently limiting the power of weak lensing surveys. If we can identify cosmological statistics that are robust against these uncertainties, or constrain these effects by other means, then we can enhance the power of current and upcoming observations from weak lensing surveys such as DES, Euclid, the Rubin Observatory, and the Roman Space Telescope. In this work, we investigate the potential of the electron density auto-power spectrum as a robust probe of cosmology and baryonic feedback. We use a suite of (magneto-)hydrodynamic simulations from the CAMELS project and perform an idealized analysis to forecast statistical uncertainties on a limited set of cosmological and physically-motivated astrophysical parameters. We find that the electron number density auto-correlation, measurable through either kinematic Sunyaev-Zel'dovich observations or through Fast Radio Burst dispersion measures, provides tight constraints on $Ω_{m}$ and the mean baryon fraction in intermediate-mass halos, $\bar{f}_{\mathrm{bar}}$. By obtaining an empirical measure for the associated systematic uncertainties, we find these constraints to be largely robust to differences in baryonic feedback models implemented in hydrodynamic simulations. We further discuss the main caveats associated with our analysis, and point out possible directions for future work.