Nonperturbative study of generalized ladder graphs in a φ^2χ theory
Preprint
- 21 June 1996
Abstract
The Feynman-Schwinger representation is used to construct scalar-scalar bound states for the set of all ladder and crossed-ladder graphs in a \phi^2\chi theory in (3+1) dimensions. The results are compared to those of the usual Bethe-Salpeter equation in the ladder approximation and of several quasi-potential equations. Particularly for large couplings, the ladder predictions are seen to underestimate the binding energy significantly as compared to the generalized ladder case, whereas the solutions of the quasi-potential equations provide a better correspondence. Results for the calculated bound state wave functions are also presented.Keywords
All Related Versions
- Version 1, 1996-06-21, ArXiv
- Published version: Physical Review Letters, 77 (5), 814.
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