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Quantum Geometry Probed by Chiral Excitonic Optical Response of Chern Insulators

Mesoscale and Nanoscale Physics 2025-03-18 v2 Materials Science Strongly Correlated Electrons

Abstract

We theoretically derive the sum rule for the negative first moment of the absorptive optical conductivity with excitonic effects and establish its connection to the quantum weight KK and Chern number CC of the ground state. Applying this framework, we investigate the excitonic optical response of the Chern insulator at hole filling factor ν=1\nu=1 in twisted bilayer MoTe2_2. A single chiral exciton state, which selectively absorbs circularly polarized light of a specific handedness, dominates the optical sum rule. The chiral exciton state comprises two types of interlayer electron-hole transitions, which cancel out the total out-of-plane dipole moment. The absorption spectrum shows nearly perfect magnetic circular dichroism, which can be attributed to the nearly saturated bound KCK \ge |C| of the Chern insulator under study. Our work illustrates the potential of using excitonic optical responses to probe quantum geometry encoded by KK and CC of Chern insulators in moir\'e superlattices.

Keywords

Cite

@article{arxiv.2407.03317,
  title  = {Quantum Geometry Probed by Chiral Excitonic Optical Response of Chern Insulators},
  author = {Wen-Xuan Qiu and Fengcheng Wu},
  journal= {arXiv preprint arXiv:2407.03317},
  year   = {2025}
}

Comments

7+10 pages,4+7 figures