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Two-nucleon potential from chiral Lagrangians

Physical Review C · 1996 · Vol. 53(5) · pp. 2086–2105
Carlos OrdońẽzL. RayU. van Kolck

Abstract

Chiral symmetry is consistently implemented in the two-nucleon problem at low-energy through the general effective chiral Lagrangian. The potential is obtained up to a certain order in chiral perturbation theory both in momentum and coordinate space. Results of a fit to scattering phase shifts and bound state data are presented, where satisfactory agreement is found for laboratory energies up to about 100 MeV. \textcopyright{} 1996 The American Physical Society.

Quantum Chromodynamics and Particle InteractionsParticle physics theoretical and experimental studiesHigh-Energy Particle Collisions ResearchChiral perturbation theoryPhysicsNucleonLagrangianBound stateMathematical physicsChiral symmetryPerturbation theory (quantum mechanics)ScatteringCoordinate space

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • Vanderbilt University
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References
Chiral quarks and the non-relativistic quark model
Nuclear Physics B · 1984 · 1,831 citations
Baryon chiral perturbation theory using a heavy fermion lagrangian
Physics Letters B · 1991 · 1,004 citations
Nuclear forces from chiral lagrangians
Physics Letters B · 1990 · 1,394 citations
Chiral perturbation theory to one loop
Annals of Physics · 1984 · 3,852 citations
Construction of high-quality<i>NN</i>potential models
Physical Review C · 1994 · 1,341 citations
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