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Chiral Perturbation Theory and Nuclear Physics

arXiv:nucl-th/9711053

Abstract

Chiral symmetry serves as a guiding principle in low-energy hadron dynamics. An effective lagrangian, which explicitly breaks chiral symmetry via a small mass term, allows for a systematic method of calculating higher order corrections to tree-level results. This is applied to radiative muon capture on hydrogen, %to extract the weak pseudoscalar form factor, and to proton-proton $π^0$ production near threshold. Both processes pose theoretical challenges in light of recent experimental results.

12 pages, Talk at the Georgia Theoretical Symposium