arXiv · 2210.15168
Magnetism and Quantum Melting in Moiré-Material Wigner Crystals
Abstract
Recent experiments have established that semiconductor-based moiré materials can host incompressible states at a series of fractional moiré-miniband fillings. These states have been identified as generalized Wigner crystals in which electrons localize on a subset of the available triangular-lattice moiré superlattice sites. In this article, we use momentum-space exact diagonalization to investigate the many-body ground state evolution at rational fillings from the weak-hopping classical lattice gas limit, in which only spin degrees-of-freedom are active at low energies, to the strong-hopping metallic regime where the Wigner crystals melt. We specifically address the nature of the magnetic ground states of the generalized Wigner crystals at fillings $ν$ = 1/3 and $ν$ = 2/3.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Nicolás Morales-Durán, Pawel Potasz, Allan H. MacDonald. 2023-07-20. Magnetism and Quantum Melting in Moiré-Material Wigner Crystals. https://doi.org/10.1103/physrevb.107.235131
Cite the original work for its findings. Save a collection to share your selection of sources.