arXiv · 2311.09323
Dimensional reduction from magnetic field in moir\'e superlattices
Abstract
Moir\'e materials provide a highly tunable platform in which novel electronic phenomena can emerge. We study strained moir\'e materials in a uniform magnetic field and predict highly anisotropic electrical conductivity which switches easy-axis as magnetic field or strain is varied. The dramatic anisotropy reflects one-dimensional localization (dimensional reduction) of the electron wavefunctions along a crystal axis due to quantum interference effects. This can be understood in an effective one-dimensional quasiperiodic Aubry-Andr\'e-like models, or in a complementary semiclassical picture. This phenomenon should be observable in strained moir\'e materials at realistic fields and low strain disorder, as well as unstrained systems with anisotropic Fermi surfaces.
Explore related subjects
Keep this discovery
Nisarga Paul, Philip J. D. Crowley, Liang Fu. 2023-11-15. Dimensional reduction from magnetic field in moir\'e superlattices. https://doi.org/10.1103/physrevlett.132.246402
Cite the original work for its findings. Save a collection to share your selection of sources.