A limit on top quark pair production at future electron-proton colliders

Abstract

The ratio of the structure functions for deep inelastic scattering in top pair production at future electron-proton colliders is analyzed at a fixed s and Q2 relative to the minimum value of x given by Q2/s using collinear factorization. This compact formula for the ratio FL2(Q2/s,Q2,mt) is useful for extracting a bound on the top structure function. The reduced cross-section for top production at this limit is determined, establishing a bound value for tt production at the LHeC and FCC-eh center-of-mass energies based on renormalization scales. The modification of the Bjorken scaling is applied to this bound of the reduced top cross-section at the renormalization scale μ2=Q2+4mt2, which improves the scaling quantity at Q2<4mt2. The dipole cross-section for top pair production is examined across a wide range of dipole sizes, denoted as r. It is expected that there will be limited behavior in observing top saturation in future electron-proton colliders according to the bound behavior. The probability of the Higgs boson in γ*g interactions is compared to the gg process at the order of O(αem/αs).

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