Reduction Formulas for Charged Particles and Coherent States in Quantum Electrodynamics

1973; American Physical Society; Volume: 7; Issue: 4 Linguagem: Inglês

10.1103/physrevd.7.1082

ISSN

1538-4500

Autores

Daniel Zwanziger,

Tópico(s)

Quantum Electrodynamics and Casimir Effect

Resumo

A weak asymptotic limit is proposed for a charged field as an operator on the space of asymptotic states. This leads to a modified Lehmann-Symanzik-Zimmermann reduction formula and a determination of the singularity near the mass shell of the Green's function of a charged particle in the presence of other charged particles. Coherent states of the electromagnetic field are also reduced out. The resultant expression for $S$-matrix elements in terms of vacuum expectation values of time-ordered fields yields a slight elaboration of the Feynman rules which allows a perturbative calculation that is free of infrared and Coulombic divergences order by order. As an application, the amplitude for scattering of a Dirac particle by an external Coulomb potential is calculated to second order in the external potential, with a finite result.

Referência(s)