Probing Dark Matter annihilation in the Galactic Centre with TRIDENT

arXiv:2601.06817 · hep-ph, astro-ph.HE, hep-ex · Submitted 2026-01-11 · Read on arXiv

hep-ph, astro-ph.HE, hep-ex

Submitted: 2026-01-11

Updated: 2026-09-07

Comments: 26 pages, 10 figures, 1 appendix. Matches published version (PRD)

Journal ref: Phys.Rev.D 114 (2026) 6, 063008

DOI: 10.1103/djnq-kfnh

License: http://creativecommons.org/licenses/by/4.0/

The gist: We determine the future sensitivity of the TRIDENT neutrino telescope to dark matter annihilation in the Galactic Centre.

Terminology

Abstract

We determine the future sensitivity of the TRIDENT neutrino telescope to dark matter annihilation in the Galactic Centre. By applying the full detector design and assuming an NFW halo profile, we show that TRIDENT will probe annihilation cross-section down to σv about5 times10-27, cm cubed, s-1 for 10, TeV dark matter, falling below the thermal freeze-out benchmark. The analysis is carried out with all-flavour neutrino interactions, where we demonstrate that cascade events, primarily due to ν e,τ, show greater sensitivity to a dark matter signal compared to the more commonly studied track events. Furthermore, we highlight the impact of a previously overlooked background, Galactic neutrinos produced from interactions between hadronic cosmic rays and interstellar gas. We find dark matter sensitivities are more strongly degraded in the high energy region above about 10, TeV, with a maximal weakening of approximately a factor of 2. This effect remains smaller than the uncertainty associated with the dark matter density profile but can nonetheless mimic a positive annihilation signal. We contextualise these results with a concrete particle model and show that TRIDENT will be able to probe the most interesting untested parts of parameter space.

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