A cuspy dark matter halo
Yong Shi (NJU), Zhi-Yu Zhang (NJU), Junzhi Wang (SHAO), Jianhang Chen, (NJU), Qiusheng Gu (NJU), Xiaoling Yu (NJU), Songlin Li (NJU)

TL;DR
This study presents detailed gas dynamics mapping of the ultra-diffuse galaxy AGC 242019, revealing a cuspy dark matter halo profile consistent with the Navarro-Frenk-White model, challenging alternative dark matter theories and certain galaxy formation models.
Contribution
First spatially-resolved dark matter profile measurement in an ultra-diffuse galaxy, supporting cuspy halos and constraining dark matter particle properties.
Findings
Dark matter halo is cuspy with alpha ≈ -0.90.
Favors NFW profile over cored models.
Constraints on dark matter particle properties.
Abstract
The cusp-core problem is one of the main challenges of the cold dark matter paradigm on small scales: the density of a dark matter halo is predicted to rise rapidly toward the center as rho ~ r^alpha with alpha between -1 and -1.5, while such a cuspy profile has not been clearly observed. We have carried out the spatially-resolved mapping of gas dynamics toward a nearby ultra-diffuse galaxy (UDG), AGC 242019. The derived rotation curve of dark matter is well fitted by the cuspy profile as described by the Navarro-Frenk-White model, while the cored profiles including both the pseudo-isothermal and Burkert models are excluded. The halo has alpha=-(0.90+-0.08) at the innermost radius of 0.67 kpc, Mhalo=(3.5+-1.2)E10 Msun and a small concentration of 2.0+-0.36. AGC 242019 challenges alternatives of cold dark matter by constraining the particle mass of fuzzy dark matter to be < 0.11E-22 eV…
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