Eikonal spin-dependent odderon and gluon Sivers function of a proton and its small-𝑥 evolution
The matrix element in the proton of the eikonal Odderon operator, with a helicity flip, has been shown to correspond to the dipole gluon Sivers function. We employ a three quark light-front model of the proton to determine the Sivers function at moderately small 𝑥 0 ∼ 0.1 and transverse momentum 𝑘 ⊥ ≲ 1 GeV. The model light-cone (LC) wave function predicts the properties of 𝑥𝑓$^{⊥𝑔}_{1𝑇}$(𝑥,𝑘 ⊥ ) such as its overall magnitude, the position of its peak in 𝑘 ⊥ , and its behavior at small 𝑘 ⊥ . We then compute numerically the Balitsky-Fadin-Kuraev-Lipatov anomalous dimension characterizing the power-law tail at 𝑘 ⊥ ≳ 1.5 GeV of the gluon Sivers function at small (but preasymptotic) LC momentum fractions 𝑥 ∼ 𝑥 0 𝑒 −1/𝛼 𝑠 : 𝑥𝑓$^{⊥𝑔}_{1𝑇}$(𝑥,𝑘 ⊥ ) ∼ 𝑘$^{−3.3}_{⊥}$.