Model-Independent and Data-Driven Extraction of the Photon Distribution Function at the Electron--Ion Collider
arXiv:2607.14958
The paper proposes a model‑independent, data‑driven method to extract the photon distribution function at the Electron‑Ion Collider by using ratios of measured to theoretically calculated cross sections, while accounting for soft‑photon radiation, binning, and detector acceptance.
Abstract
In this work, we investigate a cross-section-ratio-based inversion method for extracting distribution functions at the Electron--Ion Collider (EIC). Starting from the general factorization formula , we show that, for an appropriate bremsstrahlung process and suitably chosen differential observables, the convolution structure can be reduced to a multiplicative form. On this basis, we define the ratio where is the experimentally measured differential cross section and is a perturbatively calculable theoretical input. We then establish the relation between and the target distribution function . Finally, we investigate how the theoretical input should be constructed when soft-photon radiation, finite-bin-width effects, and experimental acceptance are taken into account.