English

Noncommutative momentum and torsional regularization

General Relativity and Quantum Cosmology 2021-01-22 v5 High Energy Physics - Theory Quantum Physics

Abstract

We show that in the presence of the torsion tensor SkijkS^k_{\phantom{k}ij}, the quantum commutation relation for the four-momentum, traced over spinor indices, is given by [pi,pj]=2iSkijkpk[p_i,p_j]=2i\hbar S^k_{\phantom{k}ij}p_k. In the Einstein--Cartan theory of gravity, in which torsion is coupled to spin of fermions, this relation in a coordinate frame reduces to a commutation relation of noncommutative momentum space, [pi,pj]=iϵijkUp3pk[p_i,p_j]=i\epsilon_{ijk}Up^3 p_k, where UU is a constant on the order of the squared inverse of the Planck mass. We propose that this relation replaces the integration in the momentum space in Feynman diagrams with the summation over the discrete momentum eigenvalues. We derive a prescription for this summation that agrees with convergent integrals: d4p(p2+Δ)s4πUs2l=10π/2dϕsin4ϕns3[sinϕ+UΔn]s, \int\frac{d^4p}{(p^2+\Delta)^s}\rightarrow 4\pi U^{s-2}\sum_{l=1}^\infty \int_0^{\pi/2} d\phi \frac{\sin^4\phi\,n^{s-3}}{[\sin\phi+U\Delta n]^s}, where n=l(l+1)n=\sqrt{l(l+1)} and Δ\Delta does not depend on pp. We show that this prescription regularizes ultraviolet-divergent integrals in loop diagrams. We extend this prescription to tensor integrals. We derive a finite, gauge-invariant vacuum polarization tensor and a finite running coupling. Including loops from all charged fermions, we find a finite value for the bare electric charge of an electron: 1.22e\approx -1.22\,e. This torsional regularization may therefore provide a realistic, physical mechanism for eliminating infinities in quantum field theory and making renormalization finite.

Keywords

Cite

@article{arxiv.1712.09997,
  title  = {Noncommutative momentum and torsional regularization},
  author = {Nikodem Popławski},
  journal= {arXiv preprint arXiv:1712.09997},
  year   = {2021}
}

Comments

14 pages; published version

R2 v1 2026-06-22T23:31:31.242Z