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Higher precision constraints on the tau in LHC photon-initiated production: a full account of hadron dissociation and soft survival effects. | LitMetric

AI Article Synopsis

  • This study is the first to calculate how photon-initiated pair production is affected by non-zero anomalous magnetic and electric dipole moments of leptons, considering their interplay with survival factors and potential dissociation of hadron beams.
  • The authors found that the impact of these factors is generally minor (on the percent level) in current experimental analyses but will become more significant as measurement precision improves.
  • To assist future research, the calculations have been integrated into the SuperChic Monte Carlo generator, allowing simulation of this process with adjustable parameters without additional reruns.

Article Abstract

We present the first calculation of photon-initiated pair production in the presence of non-zero anomalous magnetic ( ) and/or electric dipole ( ) moments of the lepton that accounts for the non-trivial interplay between these modifications with the soft survival factor and the possibility of dissociation of the hadron (proton or ion) beam. The impact of these is on general grounds not expected to have a uniform dependence on the value of , but in all previous analyses this assumption has been made. We have therefore investigated the importance of these effects in the context of photon-initiated pair production in both pp and PbPb collisions. This is in general found to be relatively small, at the percent level in terms of any extracted limits or observations of , such that these effects can indeed be safely ignored in existing experimental analyses. However, as the precision of such determinations increases in the future, the relevance of these effects will likewise increase. With this in mind we have made our calculation publicly available in the SuperChic Monte Carlo generator, including the possibility to simulate this process for varying without rerunning.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11683026PMC
http://dx.doi.org/10.1140/epjc/s10052-024-13685-7DOI Listing

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