English

Four-dimensional noncommutative deformations of $U(1)$ gauge theory and $L_{\infty}$ bootstrap

High Energy Physics - Theory 2021-12-23 v2 General Relativity and Quantum Cosmology Mathematical Physics math.MP

Abstract

We construct a family of four-dimensional noncommutative deformations of U(1)U(1) gauge theory following a general scheme, recently proposed in JHEP 08 (2020) 041 for a class of coordinate-dependent noncommutative algebras. This class includes the su(2)\mathfrak{su}(2), the su(1,1)\mathfrak{su}(1,1) and the angular (or λ\lambda-Minkowski) noncommutative structures. We find that the presence of a fourth, commutative coordinate x0x^0 leads to substantial novelties in the expression for the deformed field strength with respect to the corresponding three-dimensional case. The constructed field theoretical models are Poisson gauge theories, which correspond to the semi-classical limit of fully noncommutative gauge theories. Our expressions for the deformed gauge transformations, the deformed field strength and the deformed classical action exhibit flat commutative limits and they are exact in the sense that all orders in the deformation parameter are present. We review the connection of the formalism with the LL_{\infty} bootstrap and with symplectic embeddings, and derive the LL_{\infty}-algebra, which underlies our model.

Keywords

Cite

@article{arxiv.2108.04856,
  title  = {Four-dimensional noncommutative deformations of $U(1)$ gauge theory and $L_{\infty}$ bootstrap},
  author = {Maxim Kurkov and Patrizia Vitale},
  journal= {arXiv preprint arXiv:2108.04856},
  year   = {2021}
}

Comments

16 pages, revised version, accepted for publication in JHEP