The NN scattering 3S1-3D1 mixing angle at NNLO
arXiv:nucl-th/9906056 · doi:10.1103/PhysRevC.61.044005
Abstract
The 3S1-3D1 mixing angle for nucleon-nucleon scattering, epsilon_1, is calculated to next-to-next-to-leading order in an effective field theory with perturbative pions. Without pions, the low energy theory fits the observed epsilon_1 well for momenta less than MeV. Including pions perturbatively significantly improves the agreement with data for momenta up to MeV with one less parameter. Furthermore, for these momenta the accuracy of our calculation is similar to an effective field theory calculation in which the pion is treated non-perturbatively. This gives phenomenological support for a perturbative treatment of pions in low energy two-nucleon processes. We explain why it is necessary to perform spin and isospin traces in d dimensions when regulating divergences with dimensional regularization in higher partial wave amplitudes.
17 pages, journal version
References in corpus (8)
- Nucleon-Nucleon Effective Field Theory Without Pions
- Proton-Proton Scattering Lengths from Effective Field Theory
- Wigner symmetry in the limit of large scattering lengths
- A momentum subtraction scheme for two--nucleon effective field theory
- Gamma-Deuteron Compton Scattering in Effective Field Theory
- Testing Low Energy Theorems in Nucleon-Nucleon Scattering
- n + p -> d + gamma in Effective Field Theory
- NNLO Calculation of Two-Nucleon Scattering in EFT for a Two Yukawa Toy Model
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