English

Towards $\alpha'$-finiteness: $q$-deformed open string amplitude

High Energy Physics - Theory 2023-07-26 v1

Abstract

Revisiting the Coon amplitude, a deformation of the Veneziano amplitude with a logarithmic generalization of linear Regge trajectories, we scrutinize its potential origins in a worldsheet theory by proposing a definition of its qq-deformation through the integral representation of the qq-beta function. By utilizing qq-deformed commutation relations and vertex operators, we derive the Coon amplitude within the framework of the dual resonance model. We extend this to the open-string context by qq-deforming the Lie algebra su(1,1)\mathfrak{su}(1,1), resulting in a well-defined qq-deformed open superstring amplitude. We further demonstrate that the qq-prefactor in the Coon amplitude arises naturally from the property of the qq-integral. Furthermore, we find that two different types of qq-prefactors, corresponding to different representations of the same scattering amplitude, are essentially the same by leveraging the properties of qq-numbers. Our findings indicate that the qq-deformed string amplitude defines a continuous family of amplitudes, illustrating how string amplitudes with a finite α\alpha^\prime uniquely flow to the amplitudes of scalar scattering in field theory at energy scale Λ\Lambda as qq changes from 11 to 00. This happens without the requirement of an α\alpha^\prime expansion, presenting a fresh perspective on the connection between string and field theories.

Keywords

Cite

@article{arxiv.2307.13117,
  title  = {Towards $\alpha'$-finiteness: $q$-deformed open string amplitude},
  author = {Yuqi Li and Hao-Yu Sun},
  journal= {arXiv preprint arXiv:2307.13117},
  year   = {2023}
}
R2 v1 2026-06-28T11:39:07.531Z