Moiré Enhanced Potentials in Twisted Transition Metal Dichalcogenide Trilayers Homostructures

Author:

Zheng Haihong12,Wu Biao12,Wang Chang‐Tian34,Li Shaofei1,He Jun1,Liu Zongwen56,Wang Jian‐Tao347,Duan Ji‐an2,Liu Yanping128ORCID

Affiliation:

1. School of Physics and Electronics Hunan Key Laboratory for Super‐microstructure and Ultrafast Process Central South University 932 South Lushan Road Changsha Hunan 410083 People's Republic of China

2. State Key Laboratory of High‐Performance Complex Manufacturing Central South University 932 South Lushan Road Changsha Hunan 410083 People's Republic of China

3. Beijing National Laboratory for Condensed Matter Physics Institute of Physics Chinese Academy of Sciences Beijing 100190 China

4. School of Physical Sciences University of Chinese Academy of Sciences Beijing 100049 People's Republic of China

5. School of Chemical and Biomolecular Engineering The University of Sydney Sydney NSW 2006 Australia

6. The University of Sydney Nano Institute The University of Sydney Sydney NSW 2006 Australia

7. Songshan Lake Materials Laboratory Dongguan Guangdong 523808 People's Republic of China

8. Shenzhen Research Institute of Central South University Shenzhen 518057 People's Republic of China

Abstract

AbstractThe exploration of moiré superlatticesholds promising potential to uncover novel quantum phenomena emerging from the interplay of atomic structure and electronic correlation . However, the impact of the moiré potential modulation on the number of twisted layers has yet to be experimentally explored. Here, this work synthesizes a twisted WSe2 homotrilayer using a dry‐transfer method and investigates the enhancement of the moiré potential with increasing number of twisted layers. The results of the study reveal the presence of multiple exciton resonances with positive or negative circularly polarized emission in the WSe2 homostructure with small twist angles, which are attributed to the excitonic ground and excited states confined to the moiré potential. The distinct g‐factor observed in the magneto‐optical spectroscopy is also shown to be a result of the confinement of the exciton in the moiré potential. The moiré potential depths of the twisted bilayer and trilayer homostructures are found to be 111 and 212 meV, respectively, an increase of 91% from the bilayer structure. These findings demonstrate that the depth of the moiré potential can be manipulated by adjusting the number of stacked layers, providing a promising avenue for exploration into highly correlated quantum phenomena.

Funder

National Natural Science Foundation of China

Central South University

Australian Research Council

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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