Publication | Closed Access
Linear Integral Equations for Relativistic Multichannel Scattering
719
Citations
5
References
1966
Year
Numerical AnalysisEngineeringSimplest ApproximationComputational ElectromagneticsLepton-nucleon ScatteringHigh Temperature QcdPhysicsProduction ProcessesQuantum Field TheoryLow-energy Pion-pion ScatteringNon-perturbative QcdInverse Scattering TransformsNatural SciencesParticle PhysicsApplied PhysicsWave ScatteringLinear Integral EquationsHigh-frequency ApproximationMeson Spectroscopy
A set of three-dimensional coupled linear integral equations is presented for relativistic scattering and production processes. The new equations seem more amenable to numerical analysis than the standard Bethe-Salpeter equations. In addition one may discuss multiparticle scattering and hence inelastic processes. As a numerical example we discuss low-energy pion-pion scattering in the simplest approximation. We find that there are no self-consistent values for the mass and width of the $\ensuremath{\rho}$ meson if one takes into account only the elastic and $\ensuremath{\pi}\ensuremath{-}\ensuremath{\omega}$ channels.
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