Spin-2 form factors at three loop in QCD
Journal of High Energy Physics, 2015•Springer
A bstract Spin-2 fields are often candidates in physics beyond the Standard Model namely
the models with extra-dimensions where spin-2 Kaluza-Klein gravitons couple to the fields of
the Standard Model. Also, in the context of Higgs searches, spin-2 fields have been studied
as an alternative to the scalar Higgs boson. In this article, we present the complete three
loop QCD radiative corrections to the spin-2 quark-antiquark and spin-2 gluon-gluon form
factors in SU (N) gauge theory with nf light flavors. These form factors contribute to both …
the models with extra-dimensions where spin-2 Kaluza-Klein gravitons couple to the fields of
the Standard Model. Also, in the context of Higgs searches, spin-2 fields have been studied
as an alternative to the scalar Higgs boson. In this article, we present the complete three
loop QCD radiative corrections to the spin-2 quark-antiquark and spin-2 gluon-gluon form
factors in SU (N) gauge theory with nf light flavors. These form factors contribute to both …
Abstract
Spin-2 fields are often candidates in physics beyond the Standard Model namely the models with extra-dimensions where spin-2 Kaluza-Klein gravitons couple to the fields of the Standard Model. Also, in the context of Higgs searches, spin-2 fields have been studied as an alternative to the scalar Higgs boson. In this article, we present the complete three loop QCD radiative corrections to the spin-2 quark-antiquark and spin-2 gluon-gluon form factors in SU (N) gauge theory with n f light flavors. These form factors contribute to both quark-antiquark and gluon-gluon initiated processes involving spin-2 particle in the hadronic reactions at the LHC. We have studied the structure of infrared singularities in these form factors up to three loop level using Sudakov integro-differential equation and found that the anomalous dimensions originating from soft and collinear regions of the loop integrals coincide with those of the electroweak vector boson and Higgs form factors confirming the universality of the infrared singularities in QCD amplitudes.
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