Approaching the Intrinsic Properties of Moiré Structures Using Atomic Force Microscopy Ironing
Article 2023 en
Authors
SP
Swaroop Palai
MD
Mateusz Dyksik
NS
Nikodem Sokołowski
Abstract
1 min read
Stacking monolayers of transition metal dichalcogenides (TMDs) has led to the discovery of a plethora of new exotic phenomena, resulting from moiré pattern formation. Due to the atomic thickness and high surface-to-volume ratio of heterostructures, the interfaces play a crucial role. Fluctuations in the interlayer distance affect interlayer coupling and moiré effects. Therefore, to access the intrinsic properties of the TMD stack, it is essential to obtain a clean and uniform interface between the layers. Here, we show that this is achieved by ironing with the tip of an atomic force microscope. This post-stacking procedure dramatically improves the homogeneity of the interfaces, which is reflected in the optical response of the interlayer exciton. We demonstrate that ironing improves the layer coupling, enhancing moiré effects and reducing disorder. This is crucial for the investigation of TMD heterostructure physics, which currently suffers from low reproducibility.
Medha Dandu, Sriram Sankar, Mit H. Naik, Patrick Hays, Daria D. Blach, Elyse Barré, Takashi Taniguchi, Kenji Watanabe, Steven G. Louie, Felipe H. da Jornada, Sefaattin Tongay, Jordan A. Hachtel, Peter Ercius, Archana Raja, Sandhya Susarla
Mihir Pendharkar, Steven J. Tran, Gregory Zaborski, Joe Finney, Aaron L. Sharpe, Rupini Kamat, Sandesh S. Kalantre, M. B. Hocking, Nathan J. Bittner, Kenji Watanabe, Takashi Taniguchi, Bede Pittenger, Christina J. Newcomb, M. A. Kastner, Andrew J. Mannix, David Goldhaber‐Gordon
Daesung Park, Changwon Park, Kunihiro Yananose, Eunjung Ko, Rebecca Engelke, Xi Zhang, Konstantin Davydov, Matthew Green, Sang Hwa Park, Jae Heon Lee, Kenji Watanabe, Takashi Taniguchi, Sang Mo Yang, Ke Wang, Philip Kim, Young‐Woo Son, Hyobin Yoo
Discussion(0)
No comments yet. Be the first to comment.