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Renormalization of the Abelian Higgs-Kibble Model

C. Becchi, +2 more
- Vol. 22, pp 1-53
TLDR
In this paper, the perturbative renormalization of the abelian Higgs-Kibble model is studied within the class of renormalizable gauges which are odd under charge conjugation.
Abstract
This article is devoted to the perturbative renormalization of the abelian Higgs-Kibble model, within the class of renormalizable gauges which are odd under charge conjugation. The Bogoliubov Parasiuk Hepp-Zimmermann renormalization scheme is used throughout, including the renormalized action principle proved by Lowenstein and Lam. The whole study is based on the fulfillment to all orders of perturbation theory of the Slavnov identities which express the invariance of the Lagrangian under a supergauge type family of non-linear transformations involving the Faddeev-Popov ghosts. Direct combinatorial proofs are given of the gauge independence and unitarity of the physicalS operator. Their simplicity relies both on a systematic use of the Slavnov identities as well as suitable normalization conditions which allow to perform all mass renormalizations, including those pertaining to the ghosts, so that the theory can be given a setting within a fixed Fock space. Some simple gauge independent local operators are constructed.

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On the Initial State and Consistency Relations

TL;DR: In this article, the effect of the initial state on the consistency conditions for adiabatic perturbations was studied. And the authors showed that the initial wave functional/density matrix has to satisfy a Slavnov-Taylor identity similar to that of the action, in order to be consistent with the constraints of General Relativity.
Journal ArticleDOI

Quenched computation of the dependence of complexity on the free energy in the Sherrington-Kirkpatrick model

TL;DR: The quenched computation of the complexity in the Sherrington-Kirkpatrick model is presented and a modified full replica symmetry breaking ansatz is introduced in order to study the complexity dependence on the free energy.
Journal ArticleDOI

Marginal States in Mean Field Glasses

TL;DR: In this article, the authors study mean-field systems whose free-energy landscape is dominated by marginally stable states and develop various techniques to describe such states, elucidating their physical meaning and the interrelation between them.
Journal ArticleDOI

Covariant quantization of supergravity

B. de Wit, +1 more
- 27 Mar 1978 - 
TL;DR: In this article, Breitenlohner's modifications of the quantization rules for supergravity can be understood within the framework of conventional covariant quantization, proveded one uses a formulation of the theory in which the supersymmetry algebra closes.
Journal ArticleDOI

On gauge invariance of Yang-Mills theories with matter fields

TL;DR: In this article, the authors continue the investigation of quantied Yang-Mills theories coupled to matter fields in the framework of causal perturbation theory, and show the compatibility of all Cg-identities with P-, T-, C-invariance and pseudo-unitarity.
References
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Journal ArticleDOI

Regularization and Renormalization of Gauge Fields

TL;DR: In this article, a new regularization and renormalization procedure for gauge theories is presented, which is particularly well suited for the treatment of gauge theories and is transparent when anomalies such as the Bell-Jackiw-Adler anomaly may occur.
Journal ArticleDOI

Feynman Diagrams for the Yang-Mills Field

L. D. Faddeev, +1 more
- 24 Jul 1967 - 
TL;DR: In this paper, a simple method for calculation of the contribution from arbitrary diagrams with closed loops was proposed, based on the method of Feynman functional integration, which is used in this paper.
Journal ArticleDOI

Renormalization of gauge theories

TL;DR: Gauge theories are characterized by the Slavnov identities which express their invariance under a family of transformations of the supergauge type which involve the Faddeev Popov ghosts as mentioned in this paper.
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