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Charge Density Wave Driven Topological Phase Transition in Vortices

Superconductivity 2026-04-20 v1 Materials Science Strongly Correlated Electrons

Abstract

The interplay between charge density waves (CDWs) and superconductivity is a central theme in quantum materials, yet how CDW phase textures govern vortex topology remains poorly understood. We develop a theoretical framework showing that the phase of a stripe CDW can switch a magnetic vortex between topological and trivial regimes. Motivated by recent experiments, we propose two candidate mechanisms enabling phase-controlled switching of vortex topology. In a direct-modulation scenario, the CDW acts as a periodic potential that locally renormalizes band parameters and can induce topological transitions, but it generally cannot reproduce the symmetric node/antinode trend without fine tuning. In contrast, in an inversion-symmetry-breaking (ISB) scenario, a CDW node pinned to the vortex center breaks local inversion and allows for the mixture of spin-triplet pairing of Cooper pairs, producing a robust topological transition when this component dominates. Our results suggests CDW phase as a possible local handle to tune and test vortex topology.

Keywords

Cite

@article{arxiv.2604.15976,
  title  = {Charge Density Wave Driven Topological Phase Transition in Vortices},
  author = {Zhenhua Zhu and Ziqiang Wang and Dong E. Liu},
  journal= {arXiv preprint arXiv:2604.15976},
  year   = {2026}
}

Comments

9 pages, 5 figures

R2 v1 2026-07-01T12:14:16.895Z