Abstract
Optical excitation typically enhances electrical conduction and low-frequency radiation absorption in semiconductors. We, however, observe a pronounced transient decrease of conductivity in doped monolayer molybdenum disulfide (MoS2), a two-dimensional (2D) semiconductor, using ultrafast optical-pump terahertz-probe spectroscopy. In particular, the conductivity is reduced to only 30% of its equilibrium value at high pump fluence. This anomalous phenomenon arises from the strong many-body interactions in the 2D system, where photoexcited electron-hole pairs join the doping-induced charges to form trions, bound states of two electrons and one hole. The resultant increase of the carrier effective mass substantially diminishes the conductivity.
Cite
CITATION STYLE
Lui, C. H., Frenzel, A. J., Pilon, D. V., Lee, Y. H., Ling, X., Akselrod, G. M., … Gedik, N. (2014). Trion-induced negative photoconductivity in monolayer MoS2. Physical Review Letters, 113(16). https://doi.org/10.1103/PhysRevLett.113.166801
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.