Astrophysical Tests of Dark Matter Self-Interactions
Susmita Adhikari, Arka Banerjee, Kimberly K. Boddy, Francis-Yan Cyr-Racine, Harry Desmond, Cora Dvorkin, Bhuvnesh Jain, Felix Kahlhoefer, Manoj Kaplinghat, Anna Nierenberg, Annika H. G. Peter, Andrew Robertson, Jeremy Sakstein, Jes\'us Zavala

TL;DR
This review discusses how self-interacting dark matter models can explain galactic phenomena, reviews current constraints, and explores future observational and theoretical tests to understand dark matter's nature better.
Contribution
It provides a comprehensive overview of dark matter self-interactions, including physical effects, constraints, unresolved issues, and future testing strategies.
Findings
SIDM models can explain galactic rotation curve diversity
Current constraints limit SIDM interaction strengths
Future galaxy surveys will enhance tests of SIDM
Abstract
Self-interacting dark matter (SIDM) arises generically in scenarios for physics beyond the Standard Model that have dark sectors with light mediators or strong dynamics. The self-interactions allow energy and momentum transport through halos, altering their structure and dynamics relative to those produced by collisionless dark matter. SIDM models provide a promising way to explain the diversity of galactic rotation curves, and they form a predictive and versatile framework for interpreting astrophysical phenomena related to dark matter. This review provides a comprehensive explanation of the physical effects of dark matter self-interactions in objects ranging from galactic satellites (dark and luminous) to clusters of galaxies and the large-scale structure. The second major part describes the methods used to constrain SIDM models including current constraints, with the aim of advancing…
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Taxonomy
TopicsDark Matter and Cosmic Phenomena · Stellar, planetary, and galactic studies · Spectroscopy and Laser Applications
