English

Vortex Dynamics in Self-Dual Chern-Simons Higgs Systems

High Energy Physics - Theory 2009-10-22 v1

Abstract

We consider vortex dynamics in self-dual Chern-Simons Higgs systems. We show that the naive Aharanov-Bohm phase is the inverse of the statistical phase expected from the vortex spin, and that the self-dual configurations of vortices are degenerate in energy but not in angular momentum. We also use the path integral formalism to derive the dual formulation of Chern-Simons Higgs systems in which vortices appear as charged particles. We argue that besides the electromagnetic interaction, there is an additional interaction between vortices, the so-called Magnus force, and that these forces can be put together into a single `dual electromagnetic' interaction. This dual electromagnetic interaction leads to the right Aharanov-Bohm phase. We also derive and study the effective action for slowly moving vortices, which contains terms both linear and quadratic in the vortex velocity.

Keywords

Cite

@article{arxiv.hep-th/9211035,
  title  = {Vortex Dynamics in Self-Dual Chern-Simons Higgs Systems},
  author = {Yoonbai Kim and Kimyeong Lee},
  journal= {arXiv preprint arXiv:hep-th/9211035},
  year   = {2009}
}

Comments

36 pages and three figures (available under request), Columbia and CERN preprint

R2 v1 2026-07-22T15:44:15.130Z