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Dark matter-radiation interactions: the structure of Milky Way satellite galaxies

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arxiv 1512.06774 v3 pith:ZBHBSMPI submitted 2015-12-21 astro-ph.CO hep-ph

Dark matter-radiation interactions: the structure of Milky Way satellite galaxies

classification astro-ph.CO hep-ph
keywords interactionsmodelsubhaloescollisionlessdarkdensitygalaxiesmatter
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In the thermal dark matter (DM) paradigm, primordial interactions between DM and Standard Model particles are responsible for the observed DM relic density. In Boehm et al. (2014), we showed that weak-strength interactions between DM and radiation (photons or neutrinos) can erase small-scale density fluctuations, leading to a suppression of the matter power spectrum compared to the collisionless cold DM (CDM) model. This results in fewer DM subhaloes within Milky Way-like DM haloes, implying a reduction in the abundance of satellite galaxies. Here we use very high resolution N-body simulations to measure the dynamics of these subhaloes. We find that when interactions are included, the largest subhaloes are less concentrated than their counterparts in the collisionless CDM model and have rotation curves that match observational data, providing a new solution to the "too big to fail" problem.

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  1. High resolution Lyman-{\alpha} forest constraints on dark matter-neutrino scattering

    astro-ph.CO 2026-07 conditional novelty 6.0

    The Lyman-alpha forest constrains dark matter-neutrino scattering to u_nu_chi < 1.5e-8 (95% C.L.), excluding previously claimed hints of a non-zero interaction.