PaperPanorama

arXiv:2606.16099·v1·High Energy Physics — Phenomenology

LIGO, LISA and Ultralight Axion-like Dark Matter

Lawrence M. Krauss🇺🇸

PDFarXivINSPIRE

Abstract

A coherent cosmic background of axion-like particles (ALPs) coupled to photons can produce a small periodic differential phase or polarization modulation for photons traversing separate arms in gravitational wave interferometers, peaked at a frequency associated with the particle mass, and suppressed whenever the dark-matter coherence length exceeds the arm length~. For the LIGO audio frequency band the sensitivity to cosmic ALPs is below current bounds. For LISA, however, the natural mass range --~eV -- corresponding to a sideband frequency in LISA's science band of ~mHz--~Hz -- may be observable. A 1-year shot-noise-limited search projects a sensitivity ~GeV across most of the band, reaching ~GeV near ~Hz, which is -- below the CAST helioscope bound. An RF heterodyne photodetection upgrade -- to either detector -- might extend the search sensitivity to ~GeV at ~eV for LIGO and ~GeV at ~eV for LISA. Dark-matter substructure can affect the signal in a several interesting ways.

Comments: 7 pages, 2 figures, submitted to Phys. Rev. Lett