Exciton Dynamics on Suspended and Substrate-supported MoS$_{\mathrm{2}}$ and WS$_{\mathrm{2}}$ Monolayers.
ORAL
Abstract
MoS$_{\mathrm{2}}$ and WS$_{\mathrm{2}}$ monolayers are promising atomic-scale platform for novel light emission devices, however, despite perfect surface passivation and strong exciton binding energy, their luminescence efficiencies are very low. Here, through the observation of exciton dynamics by ultrafast transient reflection, we revealed that the substrate can affect the exciton dynamics on MoS$_{\mathrm{2}}$ and WS$_{\mathrm{2}}$ monolayers, by facilitating the non-radiative recombination pathways, thus reducing the luminescence efficiency. Furthermore, strong many-body interactions such as exciton-exciton annihilation, are enhanced on suspended MoS$_{\mathrm{2}}$ and WS$_{\mathrm{2}}$ monolayers, whereas the defects in substrates may efficiently quench excitons thus mitigate those effects.
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Authors
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Chao Xu
North Carolina State Univ, North Carolina State University
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Yiling Yu
North Carolina State Univ, North Carolina State University
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Yifei Yu
North Carolina State Univ, North Carolina State University
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Andy Barrette
North Carolina State Univ, North Carolina State University
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Linyou Cao
North Carolina State Univ, North Carolina State University
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Kenan Gundogdu
North Carolina State Univ, NC State University, North Carolina State University