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Prokudin, Alexei

Publications and source records attributed to Prokudin, Alexei.

Shedding light on shadow generalized parton distributions

The feasibility of extracting generalized parton distributions (GPDs) from deeply virtual Compton scattering (DVCS) data has recently been questioned because of the existence of an infinite set of so-called โ€œshadow GPDsโ€ (SGPDs). These SGPDs depend on the process and manifest as multiple solutions (at a fixed scale ๐‘„ 2 ) to the inverse problem that needs to be solved to infer GPDs from DVCS data. SGPDs therefore pose a significant challenge for extracting GPDs from DVCS data. With this motivation we study the extent to which QCD evolution can provide constraints on SGPDs. This is possible because the known classes of SGPDs begin to contribute to observables after evolution, and can then be constrained (at the input scale ๐‘„$^{2}_{0}$) by data that has a finite ๐‘„ 2 range. The impact that SGPDs could have on determining the total angular momentum, pressure and sheer force distributions, and tomography is also discussed. We find that ๐‘„ 2 evolution, given empirical data over a wide range of skewness (๐œ‰ ) and ๐‘„ 2 scales, constrains the SGPDs studied at low ๐‘ฅ and low ๐œ‰. If this finding generalizes to all SGPDsโ€”and we have not been able to find any SGPDs with qualitatively different behaviorโ€”then this potentially makes extraction of GPDs from DVCS possible over a limited range of ๐‘ฅ and ๐œ‰.

72 PHYSICS OF ELEMENTARY PARTICLES AND FIELDSโ†—

SIDIS-RC EvGen: A Monte-Carlo event generator of semi-inclusive deep inelastic scattering with the lowest-order QED radiative corrections

SIDIS-RC EvGen is a C++ standalone Monte-Carlo event generator for studies of semi-inclusive deep inelastic scattering (SIDIS) processes at medium to high lepton beam energies. In particular, the generator contains binary and library components for generating SIDIS events and calculating cross sections for unpolarized or longitudinally polarized beam and unpolarized, longitudinally or transversely polarized target. The structure of the generator incorporates transverse momentum-dependent parton distribution and fragmentation functions, whereby we obtain multi-dimensional binned simulation results, which will facilitate the extraction of important information about the three-dimensional nucleon structure from SIDIS measurements. In order to build this software, we have used recent elaborate QED calculations of the lowest-order radiative effects, applied to the leading order Born cross section in SIDIS. Here, in this paper, we provide details on the theoretical formalism as well as the construction and operation of SIDIS-RC EvGen, e.g., how we handle the event generation process and perform multi-dimensional integration. We also provide example programs, flowcharts, and numerical results on azimuthal transverse single-spin asymmetries.

97 MATHEMATICS AND COMPUTINGโ†—