Leading Twist Amplitudes for Exclusive Neutrino Interactions in the Deeply Virtual Limit
arXiv:hep-ph/0411253 · doi:10.1103/PhysRevD.71.053002
Abstract
Neutrino scattering on nucleons in the regime of deeply virtual kinematics is studied both in the charged and the neutral electroweak sectors using a formalism developed by Blumlein, Robaschik, Geyer and Collaborators for the analysis of the Virtual Compton amplitude in the generalized Bjorken region. We discuss the structure of the leading twist amplitudes of the process.
14 pages, 1 fig revised final version to appear in Phys. Rev. D
References in corpus (4)
- Light and Heavy Dark Matter Particles
- Very Long Baseline Neutrino Oscillation Experiment for Precise Measurements of Mixing Parameters and CP Violating Effects
- On the structure of the virtual Compton amplitude with additional final-state meson in the extended Bjorken region
- Deeply Virtual Neutrino Scattering (DVNS)
Cited by in corpus (9)
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- Exclusive neutrino-production of a charmed meson
- Exclusive neutrino-production of a charmed vector meson and transversity gluon GPDs
- Charged current electroproduction of a charmed meson at an electron-ion collider
- Weak Deeply Virtual Compton Scattering
- Hard exclusive neutrino production of a light meson
- Pion-production cross sections in neutrino reactions for studying generalized parton distributions of the nucleon
- High energy electroweak DVCS processes in neutrino-nucleon scattering
- Deeply Virtual Neutrino Scattering at Leading Twist