Measurements of Beam Spin Asymmetries of $Ï^\pmÏ^0$ dihadrons at CLAS12
arXiv:2602.14271
Abstract
A first measurement of beam spin asymmetries for $Ï^+Ï^0$ and $Ï^-Ï^0$ pairs in semi-inclusive deep inelastic scattering is reported. The asymmetries in the dihadron angular distributions were measured from the scattering of a 10.6 GeV longitudinally polarized electron beam off a proton target, using the CLAS12 detector at Jefferson Lab. A photon classifier using a Gradient Boosted Trees (GBTs) architecture was trained with Monte Carlo simulations to reduce the amount of false combinatorial background $Ï^0$s, increasing statistics by up to five-fold compared to previous CLAS12 $Ï^0$ analyses. A nonzero $\sinÏ_{R_\perp}$ asymmetry is observed. This measurement is sensitive to the underexplored collinear twist-3 PDF $e(x)$, which encodes quark-gluon correlations in the proton, and presents a new avenue for its point-by-point extraction. The asymmetries also provide the first experimental evidence for the isospin-dependence of the helicity-dependent dihadron fragmentation function $G_1^\perp$, revealed by a sign-difference between the $Ï^+Ï^0$ and $Ï^-Ï^0$ channels in the $\sin(Ï_h-Ï_{R_\perp})$ modulation. In contrast, a large, same-sign enhancement near the $Ï$ mass for the $\sin(2Ï_h-2Ï_{R_\perp})$ modulation is observed, matching spectator model predictions in $Ï^+Ï^-$ pairs.