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Topological Signatures of AGN Feedback in the Simba Simulations

Published 17 Sep 2026 in astro-ph.GA | (2609.19993v1)

Abstract: Active galactic nuclei (AGN) feedback can alter the abundance and spatial distribution of galaxies within large-scale structure. We apply topological data analysis (TDA) to Simba hydrodynamical simulations with varying AGN feedback at z=0z=0 to determine which galaxy populations, environments, and spatial scales are most affected. The galaxy two-point correlation function is most sensitive to feedback at $r&lt;1 h<sup>{-1}</sup> Mpc$. We then use Betti curves, persistence diagrams, and the 2-Wasserstein distance to quantify feedback-dependent changes in topology. Persistence diagrams show clearer differences than Betti curves, particularly for satellite galaxies. For satellites, loop-like features show significant differences at α=0.1α=0.1--0.4h<sup>1</sup>Mpc0.4 h<sup>{-1}</sup> Mpc for all feedback channels, together with a weaker cumulative difference at α=1α=1--3h<sup>1</sup>Mpc3 h<sup>{-1}</sup> Mpc. The differences are strongest for satellites in quenched halos with Mh10<sup>12</sup>MM_h\gtrsim10<sup>{12}</sup> M_\odot. Optimal matching shows that they are driven mainly by shifts in the birth and death scales of loop-like features rather than by their appearance or disappearance. These results indicate that persistent homology can provide complementary constraints on AGN feedback and environmental quenching in galaxy surveys.

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