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Measurement of the e+eK+K cross section in the energy range s=1.041.38GeV with the SND detector at the VEPP-2M e+e collider

M. N. Achasov1,2, K. I. Beloborodov1,2, A. V. Berdyugin1,2, A. G. Bogdanchikov1, A. D. Bukin1,2, D. A. Bukin1, T. V. Dimova1,2, V. P. Druzhinin1,2, V. B. Golubev1,2 et al.

I. A. Koop1,2, A. A. Korol1, S. V. Koshuba1, E. V. Pakhtusova1, E. A. Perevedentsev1, S. I. Serednyakov1,2, Yu. M. Shatunov1,2, Z. K. Silagadze1,2, A. N. Skrinsky1, Yu. V. Usov1, and A. V. Vasiljev1,2

  • 1Budker Institute of Nuclear Physics, Novosibirsk, 630090, Russia
  • 2Novosibirsk State University, Novosibirsk, 630090, Russia

Phys. Rev. D 76, 072012 – Published 30 October, 2007

DOI: https://doi.org/10.1103/PhysRevD.76.072012

Abstract

The cross section of the process e+eK+K was measured in the energy range s=1.041.38GeV in the SND experiment at the VEPP-2M e+e collider. The measured cross section is described by the model of vector meson dominance with contributions from the light vector mesons ρ, ω, ϕ and their lowest excitations. The mean statistical accuracy of the measurement is 4.4%, and the systematic uncertainty is 5.2%.

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