English

Diphoton Higgs signal strength in universal extra dimensions

High Energy Physics - Phenomenology 2020-03-11 v2

Abstract

The signal strength of the ggHγγgg \to H \to \gamma \gamma reaction in pppp collisions at the LHC is studied within the context of the SM with UED. The impact of an arbitrary number nn of UED on both the ggHgg\to H and HγγH\to \gamma \gamma subprocesses is studied. The 1-loop contributions of Kaluza-Klein excitations to these subprocesses are proportional to discrete and continuous sums, which can diverge. By implementing dimensional regularization, it is shown that discrete regularized sums can naturally be expressed as multidimensional Epstein functions, and that divergences, if exist, emerge through the poles of these functions. It is found that continuous sums converge, but the discrete ones diverge, with the exception of the n=1n=1 case, in which the 1-dimensional Epstein function converges. It is argued that divergences that arise from discrete sums for n2n\geq 2 are genuine UV divergences, since they correspond to short-distance effects in the compact manifold. Then, the amplitudes are renormalized in a modern sense by incorporating interactions of canonical dimension higher than four that allow us to generate the required counterterms, which are determined using a MS\overline{\rm MS}-like renormalization scheme. We find that the ggHgg\to H subprocess is quite sensitive to both the size and the dimension of the compact manifold, but the SM prediction for HγγH\to \gamma \gamma subprocess is practically unchanged. In the n=1n=1 case, it is found that the experimental constraint on the compactification scale R11.5R^{-1}\geq 1.5 TeV allow us to reproduce the experimental limit on the signal strength 1.01μγγ(1)1.21.01\leq \mu^{(1)}_{\gamma \gamma}\leq 1.2. In the n2n\geq 2 cases, it is found that the experimental limit on μγγ(n)\mu^{(n)}_{\gamma \gamma} leads to stronger lower bounds for the compactification scale given by R11.55,2.45,3.57,5.10,7.25R^{-1}\geq 1.55, 2.45, 3.57, 5.10, 7.25 TeVs for n=2,4,6,8,10n=2, 4, 6, 8, 10, respectively.

Keywords

Cite

@article{arxiv.1705.02637,
  title  = {Diphoton Higgs signal strength in universal extra dimensions},
  author = {I. García-Jiménez and J. Montaño and G. I. Nápoles-Cañedo and H. Novales-Sánchez and J. J. Toscano and E. S. Tututi},
  journal= {arXiv preprint arXiv:1705.02637},
  year   = {2020}
}

Comments

31 pages, 5 figures