arXiv · 2602.08731
Synchrotron self-Compton process for constraining sub-GeV dark matter in Omega Centauri via SKA
Abstract
The search for the particle identity of dark matter (DM) continues to be a primary objective in modern physics. In this field, the sub-GeV mass range of DM detection remains a crucial yet challenging window. We investigate synchrotron self-Compton (SSC) emission from electrons and positrons produced by MeV-scale DM annihilation as a novel indirect detection channel. Focusing on the globular cluster Omega Centauri and the sensitivity of the Square Kilometre Array, we derive constraints on the annihilation cross section reaching $\langle\sigma v\rangle \sim 10^{-29}\,\rm{cm}^{3}\,\rm{s}^{-1}$ in the tens-of-MeV range. Furthermore, constraints can reach below $\langle\sigma v\rangle \sim 10^{-30}\,\rm{cm}^{3}\,\rm{s}^{-1}$ under favorable parameter choices. Although the derived limits depend on the uncertain propagation parameters, the SSC channel remains competitive with existing indirect constraints over a representative range of astrophysical assumptions, establishing SSC emission as a promising probe of sub-GeV DM.
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Guan-Sen Wang, Bing-Yu Su, Yang Yu, Bo Zhang, Lei Feng. 2026-02-09. Synchrotron self-Compton process for constraining sub-GeV dark matter in Omega Centauri via SKA. https://doi.org/10.1103/99qh-v2fy
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