We introduce a novel platform for realizing interaction-induced Hall crystals with diverse Chern numbers C. This platform consists of a two-dimensional semiconductor or graphene subjected to an out-of-plane magnetic field and a one-dimensional modulation, which can be realized by moir\'e or dielectric engineering. We show that interactions drive the system to spontaneously break the residual translational symmetry, resulting in Hall crystals with various C (including ∣C∣>1). Remarkably, these phases persist across continuous ranges of filling and magnetic field, and the global phase diagram can be understood in a unified manner.
@article{arxiv.2410.03888,
title = {Designing (higher) Hall crystals},
author = {Nisarga Paul and Gal Shavit and Liang Fu},
journal= {arXiv preprint arXiv:2410.03888},
year = {2025}
}