Relativistic descriptions of inclusive quasielastic electron scattering: application to scaling and superscaling ideas
arXiv:0906.2645 · doi:10.1103/PhysRevC.80.024605
Abstract
An analysis of inclusive quasielastic electron scattering is presented using different descriptions of the final state interactions within the framework of the relativistic impulse approximation. The relativistic Green's function approach is compared with calculations based on the use of relativistic purely real mean field potentials in the final state. Both approaches lead to a redistribution of the strength but conserving the total flux. Results for the differential cross section at different energies are presented. Scaling properties are also analyzed and discussed.
12 pages, 8 figures
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- Theoretical tools for neutrino scattering: interplay between lattice QCD, EFTs, nuclear physics, phenomenology, and neutrino event generators
- The relativistic Green's function model in charged-current quasielastic neutrino and antineutrino scattering at MINERA kinematics
- The Relativistic Green's function model and charged-current inclusive neutrino-nucleus scattering at T2K kinematics
- Neutral current quasielastic (anti)neutrino scattering beyond the Fermi gas model at MiniBooNE and BNL kinematics
- Final-state interactions in neutrino-induced proton knockout from argon in MicroBooNE
- A substandard candle: the low- method at few-GeV neutrino energies
- Parity violation in quasielastic electron-nucleus scattering within the relativistic impulse approximation
- Global Fit of Electron and Neutrino Elastic Scattering Data to Determine the Strange Quark Contribution to the Vector and Axial Form Factors of the Nucleon
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