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Novel QCD Effects from Initial and Final State Interactions.


DE2007915359

Publication Date 2007
Personal Author Brodsky, S. J.
Page Count 14
Abstract Initial-state and final-state interactions which are conventionally neglected in the parton model, have a profound effect in QCD hard-scattering reactions. The effects, which arise from gluon exchange between the active and spectator quarks, cause leading-twist single-spin asymmetries, diffractive deep inelastic scattering, diffractive hard hadronic reactions, and the breakdown of the Lam-Tung relation in Drell-Yan reactions. Diffractive deep inelastic scattering also leads to nuclear shadowing and non-universal antishadowing of nuclear structure functions through multiple scattering reactions in the nuclear target. Factorization-breaking effects are particularly important for hard hadron interactions since both initial-state and final-state interactions appear. Related factorization breaking effects can also appear in exclusive electroproduction reactions and in deeply virtual Compton scattering. None of the effects of initial-state and final-state interactions are incorporated in the light-front wavefunctions of the target hadron computed in isolation.
Keywords
  • Quantum chromodynamics
  • Interactions
  • Partons
  • Inelastic scattering
  • Gluons
  • Quarks
  • Spin
  • Asymmetry
  • Hadrons
  • Wave functions
  • Factorization
  • Compton effect
  • Nuclear structure
Source Agency
  • Technical Information Center Oak Ridge Tennessee
Corporate Authors Stanford Linear Accelerator Center, CA.; Department of Energy, Washington, DC.
Supplemental Notes Sponsored by Department of Energy, Washington, DC.
Document Type Technical Report
NTIS Issue Number 200802
Novel QCD Effects from Initial and Final State Interactions.
Novel QCD Effects from Initial and Final State Interactions.
DE2007915359

  • Quantum chromodynamics
  • Interactions
  • Partons
  • Inelastic scattering
  • Gluons
  • Quarks
  • Spin
  • Asymmetry
  • Hadrons
  • Wave functions
  • Factorization
  • Compton effect
  • Nuclear structure
  • Technical Information Center Oak Ridge Tennessee
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