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Large Photoluminescence Enhancement by an Out-of-Plane Magnetic Field in Exfoliated WS2 Flakes
【摘要】 We report an out-of-plane magnetic field induced large photoluminescence enhancement in WS2 flakes at 4 K, in contrast to the photoluminescence enhancement provided by an in-plane field in general. Two mechanisms for the enhancement are proposed. One is a larger overlap of the electron and hole caused by the magnetic field induced confinement. The other is that the energy difference between ■ and K valleys is reduced by magnetic field, and thus enhancing the corresponding indirect-transition trions. Meanwhile, the Landé gfactor of the trion is measured to be -0.8, whose absolute value is much smaller than normal exciton, which is around |-4|. A model for the trion gfactor is presented, confirming that the smaller absolute value of the Landé gfactor is a behavior of this ■–K trion. By extending the valley space, we believe this work provides a further understanding of the valleytronics in monolayer transition metal dichalcogenides.
【Abstract】 We report an out-of-plane magnetic field induced large photoluminescence enhancement in WS2 flakes at 4 K, in contrast to the photoluminescence enhancement provided by an in-plane field in general. Two mechanisms for the enhancement are proposed. One is a larger overlap of the electron and hole caused by the magnetic field induced confinement. The other is that the energy difference between ■ and K valleys is reduced by magnetic field, and thus enhancing the corresponding indirect-transition trions. Meanwhile, the Landé gfactor of the trion is measured to be -0.8, whose absolute value is much smaller than normal exciton, which is around |-4|. A model for the trion gfactor is presented, confirming that the smaller absolute value of the Landé gfactor is a behavior of this ■–K trion. By extending the valley space, we believe this work provides a further understanding of the valleytronics in monolayer transition metal dichalcogenides.
- 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2020年08期
- 【分类号】O482.55
- 【被引频次】1
- 【下载频次】6