Observation of transient trion induced by ultrafast charge transfer in graphene/MoS2 heterostructure
Abstract
Van der Waals (vdW) heterostructures constructed from transition metal dichalcogenidess provide an ideal platform for exploring various quasiparticle behaviors, with trion—composed of neutral exciton and charged carrier—being a notable example. There are typically three methods to generate trion: electrical doping, chemical doping, and direct optical doping. The first two methods generate static trion, while the last gives rise to transient trion. Here, we present an indirect optical doping approach to generate transient trion via ultrafast charge transfer (CT) and achieve control over the trion-to-exciton ratio by adjusting CT in Gr/MoS2 heterostructure. Furthermore, we demonstrated that dynamics of the transient trion generated with this method, which shows slightly longer lifetime than that of exciton accounted for the Coulomb interactions between trion and charged defect. This study provides fresh perspectives on the construction of desired quasiparticles, dynamical characterization, and the control of the many-body interaction in two-dimensional structure.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (9)
Chen Wang
Yu Chen
Qiushi Ma
Department of Chemistry, Purdue University 3 , West Lafayette, Indiana 47907,
Peng Suo
Department of Physics, Shanghai University 1 , Shanghai 200444,
Kaiwen Sun
Yifan Cheng
Xian Lin
Weimin Liu
Guohong Ma
Department of Physics, Shanghai University 1 , Shanghai 200444,