Strained two-dimensional tungsten diselenide for mechanically tunable exciton transport

  • Kim, Jin Myung
  • Jeong, Kwang-Yong
  • Kwon, Soyeong
  • So, Jae-Pil
  • Wang, Michael Cai
  • 외 3명
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초록

Tightly bound electron-hole pairs (excitons) hosted in atomically-thin semiconductors have emerged as prospective elements in optoelectronic devices for ultrafast and secured information transfer. The controlled exciton transport in such excitonic devices requires manipulating potential energy gradient of charge-neutral excitons, while electrical gating or nanoscale straining have shown limited efficiency of exciton transport at room temperature. Here, we report strain gradient induced exciton transport in monolayer tungsten diselenide (WSe2) across microns at room temperature via steady-state pump-probe measurement. Wrinkle architecture enabled optically-resolvable local strain (2.4%) and energy gradient (49 meV/mu m) to WSe2. We observed strain gradient induced flux of high-energy excitons and emission of funneled, low-energy excitons at the 2.5 mu m-away pump point with nearly 45% of relative emission intensity compared to that of excited excitons. Our results strongly support the strain-driven manipulation of exciton funneling in two-dimensional semiconductors at room temperature, opening up future opportunities of 2D straintronic exciton devices.

키워드

ELECTRON-HOLE LIQUIDDYNAMICSPHOTOLUMINESCENCECONDENSATIONTEMPERATUREEMITTERS
제목
Strained two-dimensional tungsten diselenide for mechanically tunable exciton transport
저자
Kim, Jin MyungJeong, Kwang-YongKwon, SoyeongSo, Jae-PilWang, Michael CaiSnapp, PeterPark, Hong-GyuNam, Sungwoo
DOI
10.1038/s41467-024-55135-8
발행일
2024-12
유형
Article
저널명
Nature Communications
15
1