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E<scp>FFECTIVE</scp> F<scp>IELD</scp> T<scp>HEORY FOR</scp> F<scp>EW</scp>-N<scp>UCLEON</scp> S<scp>YSTEMS</scp>

Paulo F. BedaqueNuclear Science Division, Lawrence Berkeley National Laboratory, One Cyclotron Road, Berkeley, California 94720;U. van KolckDepartment of Physics, University of Arizona, Tucson, Arizona 85721;
2002en
ABI

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▪ Abstract We review the effective field theories (EFTs) developed for few-nucleon systems. These EFTs are controlled expansions in momenta, where certain (leading-order) interactions are summed to all orders. At low energies, an EFT with only contact interactions allows a detailed analysis of renormalization in a nonperturbative context and uncovers novel asymptotic behavior. Manifestly model-independent calculations can be carried out to high orders, leading to high precision. At higher energies, an EFT that includes pion fields justifies and extends the traditional framework of phenomenological potentials. The correct treatment of QCD symmetries ensures a connection with lattice QCD. Several tests and prospects of these EFTs are discussed.

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