A displaced-vertex search strategy for low-mass axion-like particles in ultraperipheral lead-lead collisions at the LHC is proposed, with fiducial cross-section predictions for LHCb and ALICE showing current luminosities give only about 10^-3 signal events.
Tracking axion-like particles at the LHC
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abstract
Highly boosted axion-like particles decaying into photon pairs are notoriously hard to detect at the LHC. The collimated decay photons cannot be individually reconstructed using only electromagnetic calorimeter information, making the signal less distinguishable from background. In this note we propose a search strategy to address this issue, exploiting the fact that a fraction of the decay photons convert into electron-positron pairs inside the tracking detector. The resulting tracks can be resolved with high resolution, allowing to separate the two collimated photons and resolve a displaced decay vertex. To demonstrate the effectiveness of this approach, we apply it to ALPs in the challenging MeV-GeV range produced via vector boson fusion. We find that such a search could give sensitivity to untested parameter space.
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Looking for new strategies to probe low mass axion-like particles in ultraperipheral heavy-ion collisions at the LHC
A displaced-vertex search strategy for low-mass axion-like particles in ultraperipheral lead-lead collisions at the LHC is proposed, with fiducial cross-section predictions for LHCb and ALICE showing current luminosities give only about 10^-3 signal events.