Diffractive Deep-Inelastic Scattering with a Leading Proton at HERA
H1 Collaboration

TL;DR
This paper measures the cross section of diffractive deep-inelastic scattering with a leading proton at HERA, analyzing its dependence on various kinematic variables and interpreting it in terms of pomeron exchange.
Contribution
It provides detailed measurements of the diffractive cross section and extracts the pomeron trajectory parameters, advancing understanding of diffraction in deep-inelastic scattering.
Findings
Cross section depends approximately as e^{6 t} for small extxpom.
Pomeron intercept measured as 1.114 with uncertainties.
Cross section factorizes into variables related to the proton vertex.
Abstract
The cross section for the diffractive deep-inelastic scattering process is measured, with the leading final state proton detected in the H1 Forward Proton Spectrometer. The data analysed cover the range \xpom <0.1 in fractional proton longitudinal momentum loss, 0.08 < |t| < 0.5 GeV^{-2} in squared four-momentum transfer at the proton vertex, 2 < Q^2 < 50 GeV^2 in photon virtuality and 0.004 < \beta = x / \xpom < 1, where x is the Bjorken scaling variable. For , the differential cross section has a dependence of approximately , independently of \xpom, \beta and Q^2 within uncertainties. The cross section is also measured triple differentially in \xpom, \beta and Q^2. The \xpom dependence is interpreted in terms of an effective pomeron trajectory with intercept $\alpha_{\pom}(0)=1.114 \pm 0.018 ({\rm…
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