The relativistic two-body potentials of constraint theory from summation of Feynman diagrams
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Publication:1269403
DOI10.1006/aphy.1996.5632zbMath0908.65136arXivhep-ph/9602241OpenAlexW2092483351MaRDI QIDQ1269403
Publication date: 8 March 1999
Published in: Annals of Physics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/hep-ph/9602241
wave equationFeynman diagramsphotonsBethe-Salpeter equationconstraint theorybound state problemLippmann-Schwinger type equationrelativistic two-body potentials
Numerical methods for integral equations (65R20) Integro-partial differential equations (45K05) Bethe-Salpeter and other integral equations arising in quantum theory (81Q40)
Related Items (8)
Symmetries of the relativistic two-boson system in external field ⋮ Relativistic two-boson system in presence of electromagnetic plane wave ⋮ Spin and pseudo-spin symmetries of fermionic particles with an energy-dependent potential in non-commutative phase space ⋮ Hamiltonian two-body system in special relativity ⋮ Incorporation of anomalous magnetic moments in the two-body relativistic wave equations of constraint theory ⋮ Exactly solvable energy-dependent potentials ⋮ Comparing exact energy solutions of quartic eigenvalue polynomials in commutative, non-commutative and non-commutative phase frameworks for boson π− ⋮ Gauge transformations in relativistic two-particle constraint theory
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