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Deep inelastic scattering of charged leptons
1Department of Physics, University of California, Los Angeles, Calif. 90024.
Summary
This study introduces a smooth extrapolation model for particle physics, extending its use to deep inelastic scattering. Predictions are made for electron-proton scattering asymmetry, advancing theoretical physics research.
Area of Science:
- High Energy Physics
- Quantum Chromodynamics
- Particle Physics
Background:
- The study builds upon existing models in particle physics.
- Current models often rely on explicit dynamical speculation.
Purpose of the Study:
- To expound a model based on smooth extrapolation.
- To extend the model's application to deep inelastic scattering.
- To predict asymmetry in polarized electron-proton scattering.
Main Methods:
- Utilizing a smooth extrapolation hypothesis.
- Applying the model to the longitudinal cross-section of deep inelastic scattering.
- Formulating predictions for scattering asymmetry.
Main Results:
- Successful extension of the smooth extrapolation model to deep inelastic scattering.
- Generated predictions for electron-proton scattering asymmetry.
Conclusions:
- The smooth extrapolation model offers a viable alternative to dynamical speculation.
- The model's application to deep inelastic scattering is validated.
- Predictions provide testable hypotheses for future experiments.