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Updated: Jan 11, 2026

Setting Limits on Supersymmetry Using Simplified Models
Published on: November 15, 2013
LHC as an Axion-Photon Collider
Sergio Barbosa1, Matheus Coelho1, Sylvain Fichet1
1Universidade Federal do ABC, CCNH, Santo André, 09210-580 SP, Brazil.
None:
Assuming the existence of an axionlike particle (ALP), beams of relativistic particles emit fluxes of quasireal ALPs, analogous to the photon fluxes described by Weizsäcker-Williams-type approximations. Consequently, ALP-ALP and ALP-photon collisions can occur at the LHC. We initiate the study of the LHC as an ALP collider, and show that ALP collisions provide competitive probes of certain ALP couplings. We show that ALP fluxes from heavy ions are suppressed relative to those from protons, unlike their photon counterpart. As a result, the most likely processes are ALP-photon collisions occurring in the proton-ion (pA) ultraperipheral collisions. Using our implementation of ALP fluxes in simulation tools, we show that ALP-photon collisions in pPb efficiently probe ALP couplings to third generation fermions. LHC data with realistic pPb luminosity can constrain the product of ALP couplings to nucleons and top quarks at the level of O(0.01 TeV^{-1}). Notably, ALP-photon collisions naturally provide the leading probe of ALP flavor-violating couplings to the top quark. We suggest that the 2016 pPb dataset collected at CMS, ATLAS, and LHCb should be explored for evidence of such collisions.
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