English

Quantum scattering in helically twisted geometries: Coulomb-like interaction and Aharonov-Bohm effect

Quantum Physics 2026-02-06 v1

Abstract

We investigate the scattering of a charged quantum particle in a helically twisted background that induces an effective Coulomb-like interaction, in the presence of an Aharonov-Bohm (AB) flux. Starting from the nonrelativistic Schr\"odinger equation in the twisted metric, we derive the radial equation and show that, after including the AB potential, it can be mapped onto the same Kummer-type differential equation that governs the planar 2D2D Coulomb ++ AB problem, with a geometry-induced Coulomb strength and the azimuthal quantum number shifted as mmλm\to m-\lambda. We construct the exact scattering solutions, obtain closed expressions for the partial-wave SS matrix and phase shifts, and derive the corresponding scattering amplitude, differential cross section, and total cross section. We also show that the pole structure of the SS matrix is consistent with the bound-state quantization previously obtained for the helically twisted Coulomb-like problem.

Keywords

Cite

@article{arxiv.2602.05229,
  title  = {Quantum scattering in helically twisted geometries: Coulomb-like interaction and Aharonov-Bohm effect},
  author = {Augusto Tadeu P. de Araújo and Edilberto O. Silva},
  journal= {arXiv preprint arXiv:2602.05229},
  year   = {2026}
}

Comments

21 pages, 4 figures