arXiv · 2306.14198
Imaging lattice reconstruction in homobilayers and heterobilayers of transition metal dichalcogenides
Abstract
Moir\'{e} interference effects have profound impact on the optoelectronic properties of vertical van der Waals structures. Here we establish secondary electron imaging in a scanning electron microscope as a powerful technique for visualizing registry-specific domains in vertical bilayers of transition metal dichalcogenides with common moir\'e phenomena. With optimal parameters for contrast-maximizing imaging of high-symmetry registries, we identify distinct crystal realizations of WSe$_2$ homobilayers and MoSe$_2$-WSe$_2$ heterobilayers synthesized by chemical vapor deposition, and demonstrate ubiquitous lattice reconstruction in stacking-assembled bilayers with near parallel and antiparallel alignment. Our results have immediate implications for the optical properties of registry-specific excitons in layered stacks of transition metal dichalcogenides, and demonstrate the general potential of secondary electron imaging for van der Waals twistronics.
Explore related subjects
Keep this discovery
Anna Rupp, Jonas Göser, Zhijie Li, Ismail Bilgin, Anvar Baimuratov, Alexander Högele. 2023-06-25. Imaging lattice reconstruction in homobilayers and heterobilayers of transition metal dichalcogenides. https://arxiv.org/abs/2306.14198
Cite the original work for its findings. Save a collection to share your selection of sources.