arXiv · 2606.23795
Visualizing Symmetry Broken Chern Insulators and their Quantum Melting
Abstract
In the presence of a magnetic field, electronic states of moir\'e quantum materials develop a Hofstadter spectrum that provides a unique setting for studying the interplay between band topology and strong electron-electron interaction. Using scanning tunneling microscopy, we study Hofstadter's states in bilayer graphene aligned with hexagonal BN and directly visualize the formation of interaction-driven symmetry breaking Chern insulators. Our measurements reveal the formation of phases that double, triple or quadruple the moir\'e unit cell at fractional filling of the Hofstadter bands, as well as states with complex intra-unit-cell wave functions. We visualize two distinct quantum phenomena in different Chern states, including quantum melting driven by the appearance and proliferation of topological defects, and a quantum transition co-occurring with phase competition and separation.
Explore related subjects
Keep this discovery
Minhao He, Yen-Chen Tsui, Ran Peng, Kenji Watanabe, Takashi Taniguchi, Oskar Vafek, Ali Yazdani. 2026-06-22. Visualizing Symmetry Broken Chern Insulators and their Quantum Melting. https://arxiv.org/abs/2606.23795
Cite the original work for its findings. Save a collection to share your selection of sources.