collaborators

6 papers

gr-qc2026

Discriminating scalar ultralight dark matter from quasi-monochromatic gravitational waves in LISA

Jordan Gué, Peter Wolf, Aurélien Hees

A scalar ultralight dark matter (ULDM) candidate would induce oscillatory motion of freely falling test masses via its coupling to Standard Model fields. Such oscillations would cr…

hep-ph2026

Bounds on massive graviton-like particles from searches for axion-like particles coupling to photons

Jordan Gué, David d'Enterria

Limits on spin-0 axion-like-particles (ALPs) coupling to photons are reinterpreted as constraints on massive spin-2 graviton-like-particles (GLPs) with universal coupling $α_\text…

astro-ph.IM2026

Global detector network to search for high-frequency gravitational waves (GravNet): conceptual design

Dorian Amaral, Diego Blas, Yuliia Borysenkova +30

We propose GravNet (Global detector network to search for high-frequency gravitational waves), a novel experimental scheme enabling the search for gravitational waves in the MHz to…

hep-ph2026

The COSMIC WISPers White Paper: The physics case for Weakly Interacting Slim Particles

Ariel Arza, Deniz Aybas, Shyam Balaji +124

Axions and other very weakly interacting slim particles (WISPs), with masses below 1 GeV, arise naturally in many extensions of the Standard Model of particle physics. In particula…

gr-qc2026

Covariant eigenmode overlap formalism for gravitational wave signals in electromagnetic cavities

Jordan Gué, Tom Krokotsch, Gudrid Moortgat-Pick

We develop a coordinate invariant formalism which describes the mechanical and electromagnetic interaction of gravitational waves (GWs) with a wide class of resonant detectors. We…

hep-ex2025

Search for high-frequency gravitational waves via re-analysis of cavity axion data

Younggeun Kim, Jordan Gué, Changhao Xu +17

Monochromatic high-frequency gravitational waves (HFGW) provide a distinctive probe of new physics scenarios, most notably axion clouds around rotating black holes formed via super…