collaborators

6 papers

hep-ph2026

Quality control for axions and ALPs

Andrew Cheek, Andrew Fowlie, Gonzalo Herrera

Axions and axion-like particles (ALPs) are protected by Peccei-Quinn (PQ) symmetries that quantum gravity is expected to break. Modeling quantum gravity by Planck-suppressed PQ-bre…

hep-ph2026

Neutrino NSI in archaeological Pb

D. Alloni, G. Benato, P. Carniti +47

Dark matter direct detection experiments can observe solar neutrinos via coherent elastic neutrino-nucleus scattering, making it possible to test new physics in the neutrino sector…

astro-ph.CO2025

Axion Dark Matter Archaeology with Primordial Gravitational Waves

Andrew Cheek, Anish Ghoshal, Debarun Paul

We investigate the complementary information to be gained from inflationary gravitational wave (IGW) signals and searches for QCD axion dark matter. We focus on post-inflationary P…

hep-ph2025

Dark photon dark matter from flattened axion potentials

Hong-Yi Zhang, Paola Arias, Andrew Cheek +3

Dark photons can be resonantly produced in the early universe via their coupling to an oscillating axion field. However, this mechanism typically requires large axion--dark photon…

hep-ph2025

Sub-GeV Dark Matter Under Pressure from Direct Detection

Andrew Cheek, Pablo Figueroa, Gonzalo Herrera +1

The DAMIC-M collaboration recently reported impressive bounds on sub-GeV dark matter, robustly testing both thermal and non-thermal models for the very first time. In this work we…

hep-ph2025

Testing the dark origin of neutrino masses with oscillation experiments

Andrew Cheek, Luca Visinelli, Hong-Yi Zhang

The origin of neutrino masses remains unknown to date. One popular idea involves interactions between neutrinos and ultralight dark matter, described as fields or particles with ma…