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Infrared divergence enforces a rearranged perturbation expansion I Scalar electrodynamics

It is shown that the ordinary perturbation expansion must, except in certain cases, be rearranged in order to carry out uniquely the infrared exponentiation in a translation- and gauge-invariant way. The uniqueness of the exponent of order alpha follows from requiring exact order-by-order agreement...

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Autor principal: Matsson, L
Lenguaje:eng
Publicado: 1977
Materias:
Acceso en línea:http://cds.cern.ch/record/878588
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author Matsson, L
author_facet Matsson, L
author_sort Matsson, L
collection CERN
description It is shown that the ordinary perturbation expansion must, except in certain cases, be rearranged in order to carry out uniquely the infrared exponentiation in a translation- and gauge-invariant way. The uniqueness of the exponent of order alpha follows from requiring exact order-by-order agreement with the OPE before summation and also from requiring that the exponentiation of all factorizable parts must be done before integration. By this rearrangement the remaining infrared- regular part is defined in terms of correlations with respect to photon momenta in the integrands. Radiative corrections are included and the renormalization of this correlation rearrangement is carried through. All photons are treated identically. (23 refs).
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1977
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spelling cern-8785882019-09-30T06:29:59Zhttp://cds.cern.ch/record/878588engMatsson, LInfrared divergence enforces a rearranged perturbation expansion I Scalar electrodynamicsParticle Physics - PhenomenologyIt is shown that the ordinary perturbation expansion must, except in certain cases, be rearranged in order to carry out uniquely the infrared exponentiation in a translation- and gauge-invariant way. The uniqueness of the exponent of order alpha follows from requiring exact order-by-order agreement with the OPE before summation and also from requiring that the exponentiation of all factorizable parts must be done before integration. By this rearrangement the remaining infrared- regular part is defined in terms of correlations with respect to photon momenta in the integrands. Radiative corrections are included and the renormalization of this correlation rearrangement is carried through. All photons are treated identically. (23 refs).oai:cds.cern.ch:8785881977
spellingShingle Particle Physics - Phenomenology
Matsson, L
Infrared divergence enforces a rearranged perturbation expansion I Scalar electrodynamics
title Infrared divergence enforces a rearranged perturbation expansion I Scalar electrodynamics
title_full Infrared divergence enforces a rearranged perturbation expansion I Scalar electrodynamics
title_fullStr Infrared divergence enforces a rearranged perturbation expansion I Scalar electrodynamics
title_full_unstemmed Infrared divergence enforces a rearranged perturbation expansion I Scalar electrodynamics
title_short Infrared divergence enforces a rearranged perturbation expansion I Scalar electrodynamics
title_sort infrared divergence enforces a rearranged perturbation expansion i scalar electrodynamics
topic Particle Physics - Phenomenology
url http://cds.cern.ch/record/878588
work_keys_str_mv AT matssonl infrareddivergenceenforcesarearrangedperturbationexpansioniscalarelectrodynamics