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Inner structure of cold and warm dark matter halos from particle dynamics

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arxiv 2410.00195 v2 pith:UYKRDV2B submitted 2024-09-30 astro-ph.CO astro-ph.GA

classification astro-ph.COastro-ph.GA
keywords darkmatterprofilesclassifiedhalospower-lawstructureacross
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abstract

Using the number of apocenter passages $p$ and the radial action $J_r$ of each particle, we characterize the phase-space structure within the multi-stream regions of cold and warm dark matter halos in cosmological $N$-body simulations. Building on previous work by Enomoto et al. (2024), we analyze the radial density profiles of particles classified by $p$ and $J_r$. We find that the profiles consistently follow a double power-law structure, independent of the dark matter model or halo mass. The inner profile exhibits a $\rho \propto r^{-1}$ behavior, which is consistent with previous studies. Notably, this characteristics persist across both classification schemes. In contrast, the outer power-law profiles display distinct behaviors depending on the classification. While particles classified by $p$ exhibit a steeper slope, ranging from $-6$ to $-8$, those classified by $J_r$ follow a common slope of approximately $-3.5$. Overall, the amplitude of the double power-law profiles varies between simulations for different dark matter models, but this variation can be attributed to statistical differences in the concentration of halos across the models.

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  1. Road through Dark$\nu$ess: Probing dark matter-neutrino interactions using KM3-230213A

    hep-ph 2025-06 conditional novelty 4.0 of 10

    Using the 220 PeV event KM3-230213A, the authors set the highest-energy constraints to date on dark matter-neutrino scattering, and for energy-dependent cross sections they report some of the strongest existing limits.

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