QCD-based effective Lagrangian including quark mass effects: Calculation of
- 1 February 1989
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review D
- Vol. 39 (3) , 888-895
- https://doi.org/10.1103/physrevd.39.888
Abstract
Quark mass effects are included in the construction of an effective Lagrangian with bilocal pion and kaon fields. We discuss the appropriate Schwinger-Dyson equations and the choice of pseudo- scalar particle wave functions in the presence of explicit chiral-symmetry breaking. Identifying the pseudoscalar-mass terms in the effective Lagrangian, we reproduce the standard current-algebra mass formulas for charged pions and kaons. Approximate solutions to the u-, d-, and s-quark Schwinger-Dyson equations are constructed. The low- region is realistically modeled and the intermediate- and large- regions are represented by a superposition of the well-known ‘‘spontaneous’’ and ‘‘explicit’’ breaking asymptotic QCD solutions. We couple the W-boson gauge invariantly to the dynamical quarks and derive formulas for the pion and kaon decay constants and in the one-quark-loop approximation. With =93 MeV as input, we calculate the value /=1.13, compared to 1.16 experimentally, for a representative value MeV. In addition, we comment on the calculation of the pion electromagnetic form factor.
Keywords
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