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Journal ArticleDOI

Ghost-creating gauges in Yang-Mills theory

TL;DR: In this paper, the authors study the ghost-antighost symmetry of the extended BRS equations, discuss the geometrical interpretation of the formalism and define a new class of gauges in which the ghost number is only conserved modulo two.
About: This article is published in Nuclear Physics.The article was published on 1985-01-01 and is currently open access. It has received 16 citations till now. The article focuses on the topics: BRST quantization & Introduction to gauge theory.

Summary (1 min read)

5. CURCI FERRARI GAUGES

  • In their formalism, the authors may understand the breaking of unitarity algebraically.
  • In the usual construction, the physical states are defined as cohomology classes of the BRS operator:.
  • It follows that the BRS operator can no longer be used to remove the longitudinal degrees of freedom and the formalism collapses.

CONCLUSION

  • The new gauges considered in this note provide a systematic generalization of several earlier studies [2, 7, 10, 21] .
  • Then, abandoning ghost conservation, the authors have constructed a Feynman gauge where ghost and antighosts pairs are emitted by longitudinal photons, the Sp(2) symmetry is explicit and the 4-ghost interaction is absent.
  • The ghost creating gauges, and the relation to the geometry of the Lie groups, are certainly amusing and curious.

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Citations
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01 Jan 1975
TL;DR: 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.

747 citations

Journal ArticleDOI
TL;DR: In this article, a method for deriving general gauge-invariant field theories from light-cone representations of the Poincare algebra at x + = 0 is described.

162 citations

Journal ArticleDOI
TL;DR: In this article, the results of correlation functions in the Landau gauge obtained from their equations of motions are discussed and compared to the results obtained in other covariant and maximally Abelian gauges.

90 citations

Journal ArticleDOI
TL;DR: The Mathematica package DoDSE 1 is introduced which derives the Dyson–Schwinger equations graphically once the interactions of the theory are specified and is suitable for an implementation within a symbolic programming language.

58 citations

Posted Content
TL;DR: In this article, the results of correlation functions in the Landau gauge obtained from their equations of motions are discussed and compared to the results obtained in other covariant and maximally Abelian gauges.
Abstract: Yang-Mills theories are an important building block of the standard model and in particular of quantum chromodynamics. Its correlation functions describe the behavior of its elementary particles, the gauge bosons. In quantum chromodynamics, the correlation functions of the gluons are basic ingredients for calculations of hadrons from bound state equations or properties of its phase diagram with functional methods. Correlation functions of gluons are defined only in a gauge fixed setting. The focus of many studies is the Landau gauge which has some features that alleviate calculations. I discuss recent results of correlation functions in this gauge obtained from their equations of motions. Besides the four-dimensional case also two and three dimensions are treated, since the effects of truncations, viz., the procedure to render the infinitely large system of equations finite, can be studied more directly in these cases. In four dimensions, the anomalous running of dressing functions plays a special role and it is explained how resummation is realized in the case of Dyson-Schwinger equations. Beyond the Landau gauge other gauges can provide additional insights or can alleviate the development of new methods. Some aspects or ideas are more easily accessible in alternative gauges and the results presented here for linear covariant gauges, the Coulomb gauge and the maximally Abelian gauge help to refine our understanding of Yang-Mills theories.

50 citations


Additional excerpts

  • ...[605–608] is employed: Γ μ (k; p, q) = i g f abc (η pμ − η̂ qμ) (290) with η + η̂ = 1....

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References
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Journal ArticleDOI
TL;DR: In this article, the authors present an approach to quantum gauge theories formulated entirely on a superspace, and show that at the classical level the field equations are the same as in the usual Minkowski-space approach.

44 citations

Journal ArticleDOI
TL;DR: In this article, a supermanifold formalism is used to support a geometrical interpretation of a superfield formulation of BRS and anti-BRS transformations, and a super-field formulation is proposed to support the anti−BRS transformation.
Abstract: We use a supermanifold formalism to support a geometrical interpretation of a recently proposed superfield formulation of BRS (Becchi–Ronet–Stora) and anti‐BRS transformations.

42 citations

Journal ArticleDOI
TL;DR: In this article, the authors review and develop geometrical gauging involving the sequence: Lie group/Principal Bundle, for an Internal symmetry group/Soft Group Manifold, for Non-Internal groups.

29 citations

Journal ArticleDOI
TL;DR: The general solution to the Wess-Zumino consistency equation is constructed in this paper, which does not depend on the antighost, nor on the sources, but only on the gauge and ghost fields through the geometrical combination A = Aμ dxμ+c.

28 citations

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Q1. What are the contributions in this paper?

The authors study the ghost antighost symmetry of the extended BRS equations, discuss the geometrical interpretation of the formalism and define a new class of gauges in which the ghost number is only conserved modulo two. LThis work was supported by the Director, Office of Energy Research Office of High Energy and Nuclear Physics, Division of High Energy Physics of the U. S. Department of Energy under Contract DE-AC0376SF00098.