Effective Field Theory of Nucleon-Nucleon Scattering on Large Discrete Lattices
arXiv:nucl-th/0509094 · doi:10.1103/PhysRevC.73.044006
Abstract
Nuclear effective field theory is applied to the effective range expansion of S-wave nucleon-nucleon scattering on a discrete lattice. Lattice regularization is demonstrated to yield the effective range expansion in the same way as in the usual continuous open space. The relation between the effective range parameters and the potential parameters is presented in the limit of a large lattice.
24pages, 1 figure
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- Two-particle scattering on the lattice: Phase shifts, spin-orbit coupling, and mixing angles
- Lattice Calculation of Thermal Properties of Low-Density Neutron Matter with Pionless NN Effective Field Theory
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- Chiral effective field theory on the lattice at next-to-leading order
- Effective Field Theory and Finite Density Systems
- Effective interactions for light nuclei: an effective (field theory) approach
- Precision benchmark calculations for four particles at unitarity
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- Temperature-dependent errors in nuclear lattice simulations
- pi-pi Scattering in Twisted Mass Chiral Perturbation Theory
- Renormalization of a Contact Interaction on a Lattice
- Topics in Lattice QCD and Effective Field Theory
- Numerical study of renormalization group flows of nuclear effective field theory without pions on a lattice
- Effective Range Expansion for the Interaction Defined on the Lattice
- Baryon-Baryon Interactions from the Lattice