astroparticle physics

Constraints on Annihilating Dark Matter from Gamma-Ray Background-Galaxy Shape Correlations: Model-independent Null Results and Moderate Template-based Signals

arXiv:2607.10974

summary

The paper uses cross‑correlations between the unresolved gamma‑ray background measured by Fermi‑LAT and galaxy shape data from DES Y3 and DECADE to place limits on dark‑matter annihilation and decay, finding null results in model‑independent tests and modest signals in template‑based analyses.

Abstract

We revisit the cross-correlation between the unresolved -ray background and galaxy shapes to constrain the annihilation cross section of particle dark matter. Our analysis uses -ray photons from 14 years of observations with the Fermi Large Area Telescope (LAT), together with galaxy shape catalogs from the Dark Energy Survey Year 3 (DES Y3) and the Dark Energy Camera All Data Everywhere (DECADE) project, enabling us to probe cosmological large-scale signals over a common sky area of shared by the -ray and galaxy data sets. In order to better access signals from large-scale structure, we employ a Fourier-space estimator for the cross-correlation in contrast to the previous DES Y3 analysis. We find that our measurements are consistent with a null detection in a model-independent test, while template-based analyses yield signals at the level. Our null results exclude an enhanced annihilation cross section for wino-like dark matter with a mass of TeV under a modest substructure boost factor of in Milky Way-sized halos. For larger boost factors of , the constraints become significantly stronger and exclude the canonical thermal annihilation cross section for a GeV dark matter particle annihilating into or . The template-based analysis favors a power-law -ray energy dependence of the cross-correlation, but also indicates deviations from that expected based on the mean intensity of the unresolved -ray background around 100 GeV. We further consider decaying dark matter scenarios and derive lower limits on the particle lifetime of , depending on the decay channel.

15 pages, 9 figures, 1 table. To be submitted to Physical Review D

Topics & keywords

#dark matter#gamma-ray background#galaxy shape correlations#cross-correlation analysis#annihilation constraintsFermi-LATDES Y3annihilation cross sectionwino-like dark mattersubstructure boost factordecaying dark matterthermal relic
Constraints on Annihilating Dark Matter from Gamma-Ray Background-Galaxy Shape Correlations: Model-independent Null Results and Moderate Template-based Signals · wovepaper