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Department of Applied Mathematics and Theoretical Physics

When the Peccei-Quinn symmetry breaks after inflation, domain walls will form at the QCD scale in the axion field if there is more than one quark charged under the symmetry. When destabilised by quantum gravity effects, the collapse of the wall network creates relativistic axions, which subsequently turn non-relativistic and contribute to cold dark matter. Accounting for this additional contribution then requires the QCD axion to be heavier than ~10 meV - a mass range that is little explored experimentally. We describe first results from a new light-shining-through-walls search for such heavy axions at the EuXFEL, Germany and at SACLA, Japan. [SciPost Phys.15:003, 2023; Phys.Rev.Lett.134:055001,2025, arXiv:2603.15808].

Further information

Time:

09Oct
Oct 9th 2026
16:00 to 17:00

Venue:

MR19 (Potter Room, Pavilion B), CMS

Speaker:

Subir Sarkar, Oxford University

Series:

HEP phenomenology joint Cavendish-DAMTP seminar