Andersen Trond I, Scuri Giovanni, Sushko Andrey, De Greve Kristiaan, Sung Jiho, Zhou You, Wild Dominik S, Gelly Ryan J, Heo Hoseok, Bérubé Damien, Joe Andrew Y, Jauregui Luis A, Watanabe Kenji, Taniguchi Takashi, Kim Philip, Park Hongkun, Lukin Mikhail D
Department of Physics, Harvard University, Cambridge, MA, USA.
Department of Chemistry and Chemical Biology, Harvard University, Cambridge, MA, USA.
Nat Mater. 2021 Apr;20(4):480-487. doi: 10.1038/s41563-020-00873-5. Epub 2021 Jan 4.
Moiré superlattices in twisted van der Waals materials have recently emerged as a promising platform for engineering electronic and optical properties. A major obstacle to fully understanding these systems and harnessing their potential is the limited ability to correlate direct imaging of the moiré structure with optical and electronic properties. Here we develop a secondary electron microscope technique to directly image stacking domains in fully functional van der Waals heterostructure devices. After demonstrating the imaging of AB/BA and ABA/ABC domains in multilayer graphene, we employ this technique to investigate reconstructed moiré patterns in twisted WSe/WSe bilayers and directly correlate the increasing moiré periodicity with the emergence of two distinct exciton species in photoluminescence measurements. These states can be tuned individually through electrostatic gating and feature different valley coherence properties. We attribute our observations to the formation of an array of two intralayer exciton species that reside in alternating locations in the superlattice, and open up new avenues to realize tunable exciton arrays in twisted van der Waals heterostructures, with applications in quantum optoelectronics and explorations of novel many-body systems.
扭曲范德华材料中的莫尔超晶格最近已成为一种用于调控电子和光学性质的有前景的平台。全面理解这些体系并发挥其潜力的一个主要障碍是,将莫尔结构的直接成像与光学和电子性质相关联的能力有限。在此,我们开发了一种二次电子显微镜技术,以直接成像全功能范德华异质结构器件中的堆叠畴。在展示了多层石墨烯中AB/BA和ABA/ABC畴的成像后,我们运用该技术研究扭曲的WSe₂/WSe₂双层中的重构莫尔图案,并在光致发光测量中将不断增加的莫尔周期性与两种不同激子种类的出现直接关联起来。这些态可通过静电门控单独调控,并具有不同的谷相干特性。我们将观察结果归因于在超晶格中交替位置处形成的两个层内激子种类的阵列,这为在扭曲范德华异质结构中实现可调谐激子阵列开辟了新途径,可应用于量子光电子学以及新型多体系统的探索。