Investigation of $K^+K^-$ pairs in the effective mass region near $2m_K$
B. Adeva, L. Afanasyev, A. Anania, S. Aogaki, A. Benelli, V., Brekhovskikh, T. Cechak, M. Chiba, P. Chliapnikov, D. Drijard, A. Dudarev, D., Dumitriu, P. Federicova, A. Gorin, K. Gritsay, C. Guaraldo, M. Gugiu, M., Hansroul, Z. Hons, S. Horikawa, Y. Iwashita, V. Karpukhin

TL;DR
The DIRAC experiment studied low-relative-momentum $K^+K^-$ pairs near the production threshold, analyzing Coulomb and strong final state interactions to understand pair production and interaction mechanisms.
Contribution
This work provides the first detailed analysis of $K^+K^-$ pairs near threshold considering both Coulomb and strong interactions with multiple models and background suppression techniques.
Findings
Observed a fourfold increase in $K^+K^-$ yield at low $Q$ due to Coulomb FSI.
Estimated around 40,000 $K^+K^-$ pairs detected after background correction.
Confirmed the reliability of the 70\% background suppression subsample over others.
Abstract
The DIRAC experiment at CERN investigated in the reaction the particle pairs and with relative momentum in the pair system less than 100 MeV/c. Because of background influence studies, DIRAC explored three subsamples of pairs, obtained by subtracting -- using time-of-flight (TOF) technique -- background from initial distributions with sample fractions more than 70\%, 50\% and 30\%. The corresponding pair distributions in and in its longitudinal projection were analyzed first in a Coulomb model, which takes into account only Coulomb final state interaction (FSI) and assuming point-like pair production. This Coulomb model analysis leads to a yield increase of about four at MeV/c compared to 100 MeV/c. In order to study contributions from strong interaction, a second more…
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