Exploring the $S_8$ Tension: Insights from the CatNorth 1.5-Million Quasar Candidates
Jin Qin, Xue-Bing Wu, Yuming Fu, Haojie Xu, Yuxuan Pang, Yun-Hao Zhang, Pengjie Zhang

TL;DR
This study uses a large quasar catalog and CMB lensing data to measure the $S_8$ parameter across different redshifts, finding results that suggest less tension with the standard cosmological model than previously reported.
Contribution
The paper introduces a machine-learning-based method to select quasar candidates and provides new $S_8$ measurements across multiple redshift ranges, addressing systematic effects and sample incompleteness.
Findings
Low-redshift $S_8$ consistent with Planck constraints
High-redshift $S_8$ lower, possibly due to sample issues
Reduced evidence for the $S_8$ tension in current data
Abstract
The parameter , a key probe of cosmic structure growth, exhibits a persistent tension between high-redshift measurements from cosmic microwave background (CMB) anisotropies and low-redshift weak gravitational lensing observations. This discrepancy may indicate either unaccounted systematic effects or new physics beyond the standard CDM cosmology. In this work, we constrain using the high purity CatNorth 1.5 million quasar candidate catalog and the {\it Planck} DR4 CMB lensing data across the broad redshift ranges through auto-correlation and cross-correlation analyses. To address the spatial incompleteness, we develop a machine-learning-based selection function that effectively suppresses the systematics-induced power spectrum excess on large scales. Our robust low-redshift measurements at yield , consistent with…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Cosmology and Gravitation Theories · Astronomy and Astrophysical Research
