English

Hidden Quantum Geometry in Bilayer Exciton Condensates

Mesoscale and Nanoscale Physics 2026-08-04 v1

Abstract

When an electron-doped layer is stacked with a hole-doped layer with approximately equal carrier density, inter-layer Coulomb interaction turns the bilayer system into an exciton condensate (EC). In this Letter, we reveal a fundamental property of bilayer ECs: the excitonic order gives rise to nontrivial hidden quantum geometric effects in the correlated electron-hole bands, even when the non-interacting bands are trivial. Such peculiar EC-driven quantum geometry manifests itself in a characteristic out-of-plane polarization response upon applying an in-plane AC electric field to the bilayer EC system. In particular, the second-order response exhibits a characteristic inverse square scaling with the bilayer EC order parameter. Our finding reveals a fundamental hidden Berry phase effect driven by electron-hole correlations, and establishes bilayer EC as a promising platform for rich nonlinear physics.

Cite

@article{arxiv.2608.03049,
  title  = {Hidden Quantum Geometry in Bilayer Exciton Condensates},
  author = {Xuzhe Ying and Benjamin T. Zhou},
  journal= {arXiv preprint arXiv:2608.03049},
  year   = {2026}
}

Comments

Maintext: 6 pages, 2 figures; Supplemental material: 5 pages