\begin{document}$m_a$\end{document} 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 \begin{document}$m_a = 1000 - 2000 \;{\rm{GeV}}$\end{document} with collision energy of 3000 GeV and integrated luminosity of 4000 fb\begin{document}$^{-1}$\end{document} 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 \begin{document}$m_a > 80$\end{document} GeV. In particular, they are more restrictive than the limits that follow from the ALP-mediated LBL scattering at the LHC."> Polarized light-by-light scattering at the CLIC induced by axion-like particles -
  • [1]

    R.D. Peccei and H.R. Quinn, Phys. Rev. Lett.38, 1440 (1977

  • [2]

    R.D. Peccei and H.R. Quinn, Phys. Rev. D16, 1791 (1977)

  • [3]

    S. Weinberg, Phys. Rev. Lett.40, 223 (1978

  • [4]

    F. Wilzcek, Phys. Rev. Lett.40, 279 (1978

  • [5]

    J. Preskill, M.B. Wise, and F. Wilczek, Phys. Lett. B120, 127 (1983

  • [6]

    L.F. Abbott and P. Sikivie, Phys. Lett. B120, 113 (1983

  • [7]

    M. Dine and W. Fischler, Phys. Lett. B120, 137 (1983

  • [8]

    K. van Bibberet al., Phys. Rev. D39, 2089 (1989

  • [9]

    S. Moriyama, Phys. Rev. Lett.75, 3222 (1995

  • [10]

    E. Aprileet al. (XENON Collaboration),Observation of Excess Electronic Recoil Events in XENON1T, arXiv: 2006.09721

  • [11]

    P. Svrcek and E. Witten, JHEP06, 051 (2006

  • [12]

    J.P. Conlon, JHEP05, 78 (2006

  • [13]

    M.R. Douglas and S. Kachru, Rev. Mod. Phys.79, 733 (2007

  • [14]

    A. Arvanitaki, S. Dimopoulos, S. Dubovskyet al., Phys. Rev. D81, 123530 (2010

  • [15]

    B.S. Acharya, K. Bobkov, and P. Kumar, JHEP11, 105 (2010

  • [16]

    M. Cicoli, M.D. Goodshell, and A. Ringwald, JHEP10, 146 (2012

  • [17]

    J. Halverson, C. Long, B. Nelsonet al., Phys. Rev. D100, 106010 (2019

  • [18]

    E. Massó and R. Toldrà, Phys. Rev. D52, 1755 (1997

  • [19]

    B. Bellazziniet al., Phys. Rev. Lett.119, 141804 (2017

  • [20]

    V.A. Rubakov, Pis’ma Zh. Exsp. Teor. Fiz.65, 590 (1997) [JETP. Lett.65, 621 (1997)]

  • [21]

    I.G. Irastorza and J. Redondo, Prog. Part. Nucl. Phys.102, 89 (2018

  • [22]

    M. Bauer, M. Neubert, and A. Thamm, JHEP12, 044 (2017

  • [23]

    S. Knapen, T. Lin, H.K. Louet al., Phys. Rev. Lett.118, 171801 (2017

  • [24]

    LHC limits on axion-like particles from heavy-ion collisions, in Proceeding of the PHOTON 2017 Conference, Geneva, Switzerland, 22-26 May, 2017, eds. D. d’Enterria, A. de Roeck and M. Mangano, vol. 1, 2018, pp. 65-68 (arXiv: 1709.07110)

  • [25]

    C. Baldenegro, S. Fichet, G. von Gersdorffet al., JHEP06, 131 (2018

  • [26]

    C. Baldenegro, S. Fichet, G. von Gersdorffet al., JHEP06, 142 (2017)

  • [27]

    C. Baldenegro, S. Hassani, C. Royonet al., Phys. Lett. B795, 339 (2019

  • [28]

    M. Bauer, M. Heiles, M. Neubertet al., Eur. Phys. J. C79, 74 (2019

  • [29]

    M. Aaboudet al. (ATLAS Collaboration), Nat. Phys.13, 852 (2017

  • [30]

    G. Aadet al. (ATLAS Collaboration), Phys. Rev. Lett.123, 052001 (2019

  • [31]

    D. d’Enterriaet al. (CMS Collaboration), Nucl. Phys. A982, 791 (2019

  • [32]

    R.O. Coelhoet al., Eur. Phys. J. C80, 488 (2020

  • [33]

    R.O. Coelhoet al., Phys. Lett.806, 135512 (2020

  • [34]

    S. Atağ, S.C. İnan, and İ. Şahin, Phys. Rev. D80, 075009 (2009

  • [35]

    S. Atağ, S.C. İnan, and İ. Şahin, JHEP09, 042 (2010

  • [36]

    S.C. İnan and A.V. Kisselev, Phys. Rev. D100, 095004 (2019

  • [37]

    H. Braunet al.(CLIC Study Team),CLIC 2008 parameters, CERNOPEN-2008-021, CLIC-NOTE-764

  • [38]

    M.J. Bolandet al. (CLIC and CLICdp Collaborations),Updated baseline for a staged Compact Linear Collider, CERN-2016-004, arXiv: 1608.07537

  • [39]

    S.C. İnan and A.V. Kisselev,A search for axion-like particles in lightby-light scattering at the CLIC, arXiv: 2003.01978

  • [40]

    D. Dannheimet al.,CLICe+e-Linear Collider Studies, arXiv: 1208.1402

  • [41]

    The CLIC Potential for New Physics, eds. J. de Blaset al., CERN Yellow report: Monographs, Vol. 3/2018, CERN-2018-009-M (CERN, Geneva, 2018)

  • [42]

    R. Franceschini,Beyond the Standard Model physics at CLIC, arXiv: 1902.10125

  • [43]

    G. A. Moortgat-Picket al., Phys. Rep.460, 131 (2008

  • [44]

    I.F. Ginzburg, G.L. Kotkin, V.G. Serboet al., Nucl. Instrum. Meth.205, 47 (1983

  • [45]

    I.F. Ginzburg, G.L. Kotkin, S.L. Panfilet al., Nucl. Instrum. Meth.219, 5 (1984

  • [46]

    R. Franceschini, P. Roloff, U. Schnooret al.,The Compact Lineare+e-Collider (CLIC): Physics Potential, arXiv: 1812.07986

  • [47]

    O. Çakir and K.O. Ozansoy, Eur. Phys. J. C56, 279 (2008

  • [48]

    G. Cowan, K. Cranmer, E. Grosset al., Eur. Phys. J. C71, 1554 (2011

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