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AbstractAbstract
[en] We present a computation of the charge and the magnetic moment of the neutrino in the recently developed electro-weak background field method and in the linear RξL gauge. First, we deduce a formal Ward-Takahashi identity which implies the immediate cancellation of the neutrino electric charge. This Ward-Takahashi identity is as simple as that for QED. The computation of the (proper and improper) one loop vertex diagrams contributing to the neutrino electric charge is also presented in an arbitrary gauge, checking in this way the Ward-Takahashi identity previously obtained. Finally, the calculation of the magnetic moment of the neutrino, in the minimal extension of the standard model with massive Dirac neutrinos, is presented, showing its gauge parameter and gauge structure independence explicitly. (orig.)
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29 refs.
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Journal Article
Journal
European Physical Journal. C; ISSN 1434-6044; ; v. 12(4); p. 633-642
Country of publication
ELECTRIC CHARGE, ELECTROWEAK BACKGROUND FIELD METHOD, FEYNMAN DIAGRAMS, GAUGE PARAMETER INDEPENDENCE, GAUGE STRUCTURE INDEPENDENCE, GRAND UNIFIED THEORY, IMMEDIATE CHARGE CANCELLATION, IMPROPER ONE LOOP VERTEX DIAGRAMS, LEPTON MAGNETIC MOMENT, LINEAR RXIL GAUGE, MAGNETIC MOMENT, MASSIVE DIRAC NEUTRINOS, MINIMAL STANDARD MODEL EXTENSION, NEUTRINO MASS, NEUTRINOS, PROPER ONE LOOP VERTEX DIAGRAMS, WARD-TAKAHASHI IDENTITY, WEINBERG MODEL
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