English

Radial Lattice Quantization of 3D $\phi^4$ Field Theory

High Energy Physics - Lattice 2021-11-17 v1

Abstract

The quantum extension of classical finite elements, referred to as quantum finite elements ({\bf QFE})~\cite{Brower:2018szu,Brower:2016vsl}, is applied to the radial quantization of 3d ϕ4\phi^4 theory on a simplicial lattice for the R×S2\mathbb R \times \mathbb S^2 manifold. Explicit counter terms to cancel the one- and two-loop ultraviolet defects are implemented to reach the quantum continuum theory. Using the Brower-Tamayo~\cite{Brower:1989mt} cluster Monte Carlo algorithm, numerical results support the QFE ansatz that the critical conformal field theory (CFT) is reached in the continuum with the full isometries of R×S2\mathbb R \times \mathbb S^2 restored. The Ricci curvature term, while technically irrelevant in the quantum theory, is shown to dramatically improve the convergence opening, the way for high precision Monte Carlo simulation to determine the CFT data: operator dimensions, trilinear OPE couplings and the central charge.

Keywords

Cite

@article{arxiv.2006.15636,
  title  = {Radial Lattice Quantization of 3D $\phi^4$ Field Theory},
  author = {Richard C. Brower and George T. Fleming and Andrew D. Gasbarro and Dean Howarth and Timothy G. Raben and Chung-I Tan and Evan S. Weinberg},
  journal= {arXiv preprint arXiv:2006.15636},
  year   = {2021}
}

Comments

8 pages, 7 figures

R2 v1 2026-06-23T16:40:52.139Z