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On the charge radius of the neutrino

Using the pinch technique we construct at one-loop order a neutrino charge radius, which is finite, depends neither on the gauge-fixing parameter nor on the gauge-fixing scheme employed, and is process-independent. This definition stems solely from an effective proper photon-neutrino one-loop vertex...

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Detalles Bibliográficos
Autores principales: Bernabeu, J, Cabral-Rosetti, L G, Papavassiliou, J, Vidal, J
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.62.113012
http://cds.cern.ch/record/451674
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author Bernabeu, J
Cabral-Rosetti, L G
Papavassiliou, J
Vidal, J
author_facet Bernabeu, J
Cabral-Rosetti, L G
Papavassiliou, J
Vidal, J
author_sort Bernabeu, J
collection CERN
description Using the pinch technique we construct at one-loop order a neutrino charge radius, which is finite, depends neither on the gauge-fixing parameter nor on the gauge-fixing scheme employed, and is process-independent. This definition stems solely from an effective proper photon-neutrino one-loop vertex, with no reference to box or self-energy contributions. The role of the $WW$ box in this construction is critically examined. In particular it is shown that the exclusion of the effective WW box from the definition of the neutrino charge radius is not a matter of convention but is in fact dynamically realized when the target-fermions are right-handedly polarized. In this way we obtain a unique decomposition of effective self-energies, vertices, and boxes, which separately respect electroweak gauge invariance. We elaborate on the tree-level origin of the mechanism which enforces at one-loop level massive cancellations among the longitudinal momenta appearing in the Feynman diagrams, and in particular those associated with the non-abelian character of the theory. Various issues related to the known connection between the pinch technique and the Background Field Method are further clarified. Explicit closed expressions for the neutrino charge radius are reported.
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spelling cern-4516742019-09-30T06:29:59Zdoi:10.1103/PhysRevD.62.113012http://cds.cern.ch/record/451674engBernabeu, JCabral-Rosetti, L GPapavassiliou, JVidal, JOn the charge radius of the neutrinoParticle Physics - PhenomenologyUsing the pinch technique we construct at one-loop order a neutrino charge radius, which is finite, depends neither on the gauge-fixing parameter nor on the gauge-fixing scheme employed, and is process-independent. This definition stems solely from an effective proper photon-neutrino one-loop vertex, with no reference to box or self-energy contributions. The role of the $WW$ box in this construction is critically examined. In particular it is shown that the exclusion of the effective WW box from the definition of the neutrino charge radius is not a matter of convention but is in fact dynamically realized when the target-fermions are right-handedly polarized. In this way we obtain a unique decomposition of effective self-energies, vertices, and boxes, which separately respect electroweak gauge invariance. We elaborate on the tree-level origin of the mechanism which enforces at one-loop level massive cancellations among the longitudinal momenta appearing in the Feynman diagrams, and in particular those associated with the non-abelian character of the theory. Various issues related to the known connection between the pinch technique and the Background Field Method are further clarified. Explicit closed expressions for the neutrino charge radius are reported.hep-ph/0008114oai:cds.cern.ch:4516742000
spellingShingle Particle Physics - Phenomenology
Bernabeu, J
Cabral-Rosetti, L G
Papavassiliou, J
Vidal, J
On the charge radius of the neutrino
title On the charge radius of the neutrino
title_full On the charge radius of the neutrino
title_fullStr On the charge radius of the neutrino
title_full_unstemmed On the charge radius of the neutrino
title_short On the charge radius of the neutrino
title_sort on the charge radius of the neutrino
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1103/PhysRevD.62.113012
http://cds.cern.ch/record/451674
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