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Closed Algebras for Higher Rank, non-Abelian Tensor Gauge Fields

High Energy Physics - Theory 2020-12-29 v1

Abstract

A systematic method is presented for the construction and classification of algebras of gauge transformations for arbitrary high rank tensor gauge fields. For every tensor gauge field of a given rank, the gauge transformation will be stated, in a generic way, via an ansatz that contains all the possible terms, with arbitrary coefficients and the maximum number of tensor gauge functions. The requirement for the closure of the algebra will prove to be restrictive, but, nevertheless, leave a variety of choices. Properly adjusting the values of the initial coefficients and imposing restrictions on the gauge functions, one can, one the one hand, recover all the, so far, analysed algebras and on the other, construct new ones. The presentation of a brand new algebra for tensor gauge transformations is the central result of this article.

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Cite

@article{arxiv.1911.01901,
  title  = {Closed Algebras for Higher Rank, non-Abelian Tensor Gauge Fields},
  author = {Spyros Konitopoulos},
  journal= {arXiv preprint arXiv:1911.01901},
  year   = {2020}
}

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24 pages