English

Quantum perturbative solutions of extended Snyder and Yang models with spontaneous symmetry breaking

High Energy Physics - Theory 2023-10-26 v3 General Relativity and Quantum Cosmology Mathematical Physics math.MP

Abstract

We propose \hbar-expansions as perturbative solutions of quantum extended Snyder and Yang models, with \hbar-independent classical zero-th order terms responsible for the spontaneous breaking of D=4D=4 and D=5D=5 de Sitter symmetries. In such models, with algebraic basis spanned by o^(D,1)\hat o(D,1) Lie algebra generators, we relate the vacuum expectation values (VEV) of the spontaneously broken generators with the Abelian set of ten (Snyder, D=4D=4) or fifteen (Yang, D=5D=5) antisymmetric tensorial generalized coordinates, which are also used as zero order input for obtaining the perturbative solutions of quantum extended Snyder and Yang models. In such a way we will attribute to these Abelian generalized coordinates the physical meaning of the order parameters describing spontaneous symmetry breaking (SSB). It appears that the consecutive terms in \hbar-power series can be calculated explicitly if we supplement the SSB order parameters by the dual set of tensorial commutative momenta.

Keywords

Cite

@article{arxiv.2212.02316,
  title  = {Quantum perturbative solutions of extended Snyder and Yang models with spontaneous symmetry breaking},
  author = {Jerzy Lukierski and Stjepan Meljanac and Salvatore Mignemi and Anna Pachoł},
  journal= {arXiv preprint arXiv:2212.02316},
  year   = {2023}
}

Comments

11 pages; published version