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Macroscopic Dark Matter under siege: from White Dwarf Data to Gravitational Wave Detection

2025/11/28 by Jiang, Siyu, Yang, Aidi, Huang, Fa Peng
Physics and Astronomy · #Dark Matter and Cosmic Phenomena #Pulsars and Gravitational Waves Research #Atomic and Subatomic Physics Research

paper · doi:10.48550/arxiv.2511.23263

Abstract

The nature of dark matter (DM) remains a profound mystery. Macroscopic candidates, such as Fermi-balls, offer a distinct alternative to conventional particle DM, yet their low number density makes terrestrial detection challenging. In this work, we present a unified search strategy for sub-saturated Fermi-ball DM. We first revisit and significantly update astrophysical constraints from compact objects, utilizing rigorous expressions and additional white dwarf data related to ignition and subsequent supernovae. Crucially, we then explore novel signatures of Fermi-balls in future gravitational wave experiments like LISA and TianQin, performing detailed signal-to-noise ratio and Fisher matrix analyses. By combining these updated white dwarf/neutron star limits with the projected gravitational wave sensitivities, we derive the most comprehensive constraints on Fermi-ball parameter space to date, demonstrating the power of multi-messenger approaches for probing macroscopic DM.

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