Published January 1, 2021 | Version v1
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Polarized light-by-light scattering at the CLIC induced by axion-like particles

  • 1. Department of Physics, Sivas Cumhuriyet University, 58140, Sivas, Turkey
  • 2. Division of Theoretical Physics, A.A. Logunov Institute for High Energy Physics, NRC Kurchatov Institute, 142281, Protvino, Russia

Description

In this study, light-by-light (LBL) scattering with initial polarized Compton backscattered photons at the CLIC, induced by axion-like particles (ALPs), is investigated. The total cross sections are calculated assuming CP-even coupling of the pseudoscalar ALP to photons. The 95% C.L. exclusion region for the ALP mass $m_a$ and its coupling constant f is presented. The results are compared with CLIC bounds previously obtained for the unpolarized case. It is shown that the bounds on f for the polarized beams in the region $m_a$ with collision energy of 3000 GeV and integrated luminosity of 4000 fb $m_a$ are on average 1.5 times stronger than the bounds for the unpolarized beams. Moreover, our CLIC bounds are stronger than those for all current exclusion regions for $m_a$ GeV. In particular, they are more restrictive than the limits that follow from the ALP-mediated LBL scattering at the LHC.

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