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Halo Assembly Bias using properties of central galaxies in SDSS redMaPPer clusters

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arxiv 2205.03277 v2 pith:W5QS3BT2 submitted 2022-05-06 astro-ph.CO astro-ph.GA

classification astro-ph.COastro-ph.GA
keywords haloassemblybiaspropertiesclustersclusteringfixedcentral
verification ladder T0 review T1 audit T2 compute T3 formal
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The clustering of dark matter halos depends on the assembly history of halos at fixed halo mass; a phenomenon referred to as \textit{halo assembly bias}. Halo assembly bias is readily observed in cosmological simulations of dark matter. However, it is difficult to detect it in observations. The identification of galaxy or cluster properties correlated with the formation time of the halo at fixed halo mass and the ability to select galaxy clusters free from projection effects are the two most significant hurdles in the observational detection of halo assembly bias. The latter, in particular, can cause a misleading detection of halo assembly bias by boosting the amplitude of lensing and clustering on large scales. This study uses twelve different properties of central galaxies of SDSS redMaPPer clusters derived from spectroscopy to divide the clusters into sub-samples. We test the dependence of the clustering amplitude on these properties at fixed richness. We first infer halo mass and bias using weak lensing signals around the clusters using shapes of galaxies from the SDSS survey. We validate the bias difference between the two subsamples using cluster-galaxy cross-correlations. This methodology allows us to decouple the contamination due to the projection effects from the halo assembly bias signals. We do not find any significant evidence of a difference in the clustering amplitudes correlated with any of our explored properties. Our results indicate that central galaxy properties may not correlate significantly with the halo assembly histories at fixed richness.

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Cited by 2 Pith papers

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  1. Towards an Observational Detection of Halo Spin Bias using Spin-Orbit Coherence

    astro-ph.GA 2025-06 conditional novelty 6.0 of 10

    A spin proxy from neighbor galaxy motions yields a tentative observational detection of halo spin bias: SDSS groups with higher proxy spin cluster more than lower-proxy groups at fixed mass, strongest for Mh > 10^13.2...

  2. Exploring the link between galaxy assembly and dark matter halo assembly in IllustrisTNG: Insights from the Mutual Information

    astro-ph.GA 2025-02 conditional novelty 4.0 of 10

    In IllustrisTNG, the mutual information between galaxy formation efficiency and halo assembly time exceeds that of colour, sSFR, or cluster observables, especially for low-mass central galaxies.

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