We investigate the valley related carrier dynamics in monolayer MoS2 using helicity resolved non-degenerate ultrafast pump-probe spectroscopy at the vicinity of the high-symmetry K point under the temperature down to 78 K. Monolayer MoS2 shows remarkable transient reflection signals, in stark contrast to bilayer and bulk MoS2 due to the enhancement of many-body effect at reduced dimensionality. The helicity resolved ultrafast time-resolved result shows that the valley polarization is preserved for only several ps before scattering process makes it undistinguishable. We suggest that the dynamical degradation of valley polarization is attributable primarily to the exciton trapping by defect states in the exfoliated MoS2 samples.Engineering, E...
Here, the underlying mechanisms behind valley de-polarization is investigated in chemical vapor depo...
Abstract By employing ultrafast transient reflection measurements based on two-color pump-probe spec...
Monolayers of semiconducting transition metal dichalcogenides hold the promise for a new paradigm in...
We investigate the valley-related carrier dynamics in monolayer molybdenum disulfide using helicity-...
We investigate the valley-related carrier dynamics in monolayer molybdenum disulfide using helicity-...
We study the exciton valley relaxation dynamics in single-layer MoS2 by a combination of two nonequi...
Here we study the exciton valley relaxation dynamics in atomically thin MoS2 by non-equilibrium opti...
We study the ultrafast valley relaxation dynamics in monolayer MoS2 by time resolved Faraday rotatio...
International audienceThe roadmap of future innovative device developments foresees the reduction of...
Fundamental researches and explorations based on transition metal dichalcogenides (TMDCs) mainly foc...
Monolayer transition metal dichalcogenides (TMDCs) offer a tantalizing platform for control of both ...
Femtosecond helicity-resolved pump–probe spectroscopy is performed to study the spin and valley dyna...
International audienceAbstract We have investigated the laser-induced valley polarization and cohere...
Transition Metal Dichalcogenides (TMDs) represent a new frontier for optoelectronic device applicati...
International audienceIn monolayer MoS2, optical transitions across the direct band gap are governed...
Here, the underlying mechanisms behind valley de-polarization is investigated in chemical vapor depo...
Abstract By employing ultrafast transient reflection measurements based on two-color pump-probe spec...
Monolayers of semiconducting transition metal dichalcogenides hold the promise for a new paradigm in...
We investigate the valley-related carrier dynamics in monolayer molybdenum disulfide using helicity-...
We investigate the valley-related carrier dynamics in monolayer molybdenum disulfide using helicity-...
We study the exciton valley relaxation dynamics in single-layer MoS2 by a combination of two nonequi...
Here we study the exciton valley relaxation dynamics in atomically thin MoS2 by non-equilibrium opti...
We study the ultrafast valley relaxation dynamics in monolayer MoS2 by time resolved Faraday rotatio...
International audienceThe roadmap of future innovative device developments foresees the reduction of...
Fundamental researches and explorations based on transition metal dichalcogenides (TMDCs) mainly foc...
Monolayer transition metal dichalcogenides (TMDCs) offer a tantalizing platform for control of both ...
Femtosecond helicity-resolved pump–probe spectroscopy is performed to study the spin and valley dyna...
International audienceAbstract We have investigated the laser-induced valley polarization and cohere...
Transition Metal Dichalcogenides (TMDs) represent a new frontier for optoelectronic device applicati...
International audienceIn monolayer MoS2, optical transitions across the direct band gap are governed...
Here, the underlying mechanisms behind valley de-polarization is investigated in chemical vapor depo...
Abstract By employing ultrafast transient reflection measurements based on two-color pump-probe spec...
Monolayers of semiconducting transition metal dichalcogenides hold the promise for a new paradigm in...