Abstract

A previous calculation of the physical nucleon wave function in static source pion theory is extended by including the pseudoscalar $K$-meson interactions, the motivation being that this should increase the scalar part of the nucleon anomalous magnetic moment, thus improving the result of previous calculations. In constructing a trial function for the physical nucleon, the method of moments was used and terms containing up to three mesons were included. Calculation shows that a too strong $K$-meson coupling is detrimental to the vector part, and that the scalar part can be increased approximately by 10% if the $K$-meson interaction is made moderately low.

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