English

The fuzzy 4-hyperboloid $H^4_n$ and higher-spin in Yang-Mills matrix models

High Energy Physics - Theory 2024-08-27 v3

Abstract

We consider the SO(4,1)SO(4,1)-covariant fuzzy hyperboloid Hn4H^4_n as a solution of Yang-Mills matrix models, and study the resulting higher-spin gauge theory. The degrees of freedom can be identified with functions on classical H4H^4 taking values in a higher-spin algebra associated to so(4,1)\mathfrak{so}(4,1). We develop a suitable calculus to classify the higher-spin modes, and show that the tangential modes are stable. The metric fluctuations encode one of the spin 2 modes, however they do not propagate in the classical matrix model. Gravity is argued to arise upon taking into account induced gravity terms. This formalism can be applied to the cosmological FLRW space-time solutions of [1], which arise as projections of Hn4H^4_n. We establish a one-to-one correspondence between the tangential fluctuations of these spaces.

Keywords

Cite

@article{arxiv.1806.05907,
  title  = {The fuzzy 4-hyperboloid $H^4_n$ and higher-spin in Yang-Mills matrix models},
  author = {Marcus Sperling and Harold C. Steinacker},
  journal= {arXiv preprint arXiv:1806.05907},
  year   = {2024}
}

Comments

V2: 51+ 17 pages, 1 figure, minor corrections, accepted in Nucl.Phys.B. V3: The truncation of the higher-spin spectrum applies only to the image of the coherent state quantization map