Phonon-exciton Interactions in WSe2 under a quantizing magnetic field

Author:

Li Zhipeng,Wang TianmengORCID,Miao Shengnan,Li Yunmei,Lu Zhenguang,Jin ChenhaoORCID,Lian Zhen,Meng Yuze,Blei Mark,Taniguchi Takashi,Watanabe KenjiORCID,Tongay Sefaattin,Yao WangORCID,Smirnov DmitryORCID,Zhang Chuanwei,Shi Su-FeiORCID

Abstract

AbstractStrong many-body interaction in two-dimensional transitional metal dichalcogenides provides a unique platform to study the interplay between different quasiparticles, such as prominent phonon replica emission and modified valley-selection rules. A large out-of-plane magnetic field is expected to modify the exciton-phonon interactions by quantizing excitons into discrete Landau levels, which is largely unexplored. Here, we observe the Landau levels originating from phonon-exciton complexes and directly probe exciton-phonon interaction under a quantizing magnetic field. Phonon-exciton interaction lifts the inter-Landau-level transition selection rules for dark trions, manifested by a distinctively different Landau fan pattern compared to bright trions. This allows us to experimentally extract the effective mass of both holes and electrons. The onset of Landau quantization coincides with a significant increase of the valley-Zeeman shift, suggesting strong many-body effects on the phonon-exciton interaction. Our work demonstrates monolayer WSe2 as an intriguing playground to study phonon-exciton interactions and their interplay with charge, spin, and valley.

Funder

United States Department of Defense | United States Air Force | AFMC | Air Force Office of Scientific Research

ACS | American Chemical Society Petroleum Research Fund

Empire State Development's Division of Science, Technology and Innovation

National Science Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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