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Exciton luminescence and many-body effect of monolayer WS2 at room temperature

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【作者】 吴建民黎立辉郑玮豪郑弼元徐哲元张学红朱晨光吴琨张弛蒋英朱小莉庄秀娟

【Author】 Jian-Min Wu;Li-Hui Li;Wei-Hao Zheng;Bi-Yuan Zheng;Zhe-Yuan Xu;Xue-Hong Zhang;Chen-Guang Zhu;Kun Wu;Chi Zhang;Ying Jiang;Xiao-Li Zhu;Xiu-Juan Zhuang;Key Laboratory for Micro-Nano Physics and Technology of Hunan Province, School of Physics and Electronics,Hunan University;College of Materials Science and Engineering, Hunan University;

【通讯作者】 庄秀娟;

【机构】 Key Laboratory for Micro-Nano Physics and Technology of Hunan Province, School of Physics and Electronics,Hunan UniversityCollege of Materials Science and Engineering, Hunan University

【摘要】 Monolayer transition metal dichalcogenides favor the formation of a variety of excitonic quasiparticles, and can serve as an ideal material for exploring room-temperature many-body effects in two-dimensional systems. Here, using mechanically exfoliated monolayer WS2 and photoluminescence(PL) spectroscopy, exciton emission peaks are confirmed through temperature-dependent and electric-field-tuned PL spectroscopy. The dependence of exciton concentration on the excitation power density at room temperature is quantitatively analyzed. Exciton concentrations covering four orders of magnitude are divided into three stages. Within the low carrier concentration stage, the system is dominated by excitons, with a small fraction of trions and localized excitons. At the high carrier concentration stage, the localized exciton emission from defects coincides with the emission peak position of trions, resulting in broad spectral characteristics at room temperature.

【Abstract】 Monolayer transition metal dichalcogenides favor the formation of a variety of excitonic quasiparticles, and can serve as an ideal material for exploring room-temperature many-body effects in two-dimensional systems. Here, using mechanically exfoliated monolayer WS2 and photoluminescence(PL) spectroscopy, exciton emission peaks are confirmed through temperature-dependent and electric-field-tuned PL spectroscopy. The dependence of exciton concentration on the excitation power density at room temperature is quantitatively analyzed. Exciton concentrations covering four orders of magnitude are divided into three stages. Within the low carrier concentration stage, the system is dominated by excitons, with a small fraction of trions and localized excitons. At the high carrier concentration stage, the localized exciton emission from defects coincides with the emission peak position of trions, resulting in broad spectral characteristics at room temperature.

【基金】 Project supported by the National Natural Science Foundation of China (Grant Nos. 61635001, 52072117, and 51972105)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2022年05期
  • 【分类号】O469
  • 【下载频次】17
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