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Dark matter limits from the tip of the red giant branch of globular clusters

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arxiv 2407.08773 v2 pith:DSLDCTUY submitted 2024-07-11 hep-ph astro-ph.COastro-ph.GAastro-ph.HEastro-ph.SR

classification hep-phastro-ph.COastro-ph.GAastro-ph.HEastro-ph.SR
keywords darkmatterclustersgianttrgbbranchgaiaglobular
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abstract

Capture and annihilation of WIMP-like dark matter in red giant stars can lead to faster-than-expected ignition of the helium core, and thus a lower tip of the red giant branch (TRGB) luminosity. We use Gaia data to place constraints on the dark matter-nucleon cross section using 22 globular clusters with measured TRGB luminosities, and place projections on the sensitivity resulting from 161 clusters with full phase space distributions observed by Gaia. Although limits remain weaker than those from Earth-based direct detection experiments, they represent a constraint that is fully independent of dark matter properties in the Solar neighbourhood, probing its properties across the entire Milky Way galaxy. Based on our findings, it is likely that the use of the TRGB as a standard candle in $H_0$ measurements is very robust against the effects of dark matter.

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    Dark matter heat transport can erase convective cores in solar-mass stars, yielding asteroseismic constraints on dark matter-nucleon scattering and a 4 sigma hint of dark matter-electron scattering in KIC 8228742 that...

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