The transition-metal dichalcogenide VSe2 exhibits an increased charge density wave transition temperature and an emerging insulating phase when thinned to a single layer. Here, we investigate the interplay of electronic and lattice degrees of freedom that underpin these phases in single-layer VSe2 using ultrafast pump–probe photoemission spectroscopy. In the insulating state, we observe a light-induced closure of the energy gap, which we disentangle from the ensuing hot carrier dynamics by fitting a model spectral function to the time-dependent photoemission intensity. This procedure leads to an estimated time scale of 480 fs for the closure of the gap, which suggests that the phase transition in single-layer VSe2 is driven by electron–latt...
Studies of the ultrafast carrier dynamics of transition metal dichalcogenides have employed spatiall...
Transition Metal Dichalcogenides (TMDs) represent a new frontier for optoelectronic device applicati...
\ua9 2019, The Author(s), under exclusive licence to Springer Nature Limited. Heterostructures of at...
The transition-metal dichalcogenide VSe2 exhibits an increased charge density wave transition temper...
Funding: VILLUM FONDEN through the Young Investigator Program (Grant. No. 15375) and the Centre of E...
The phase transition of VO<sub>2</sub> from a monoclinic insulator to a rutile metal, which occurs t...
Emergent phenomena driven by electronic reconstructions in oxide heterostructures have been intensiv...
Emergent phenomena driven by electronic reconstructions in oxide heterostructures have been intensiv...
We apply an intense infrared laser pulse in order to perturb the electronic and vibrational states i...
We apply an intense infrared laser pulse in order to perturb the electronic and vibrational states i...
We apply an intense infrared laser pulse in order to perturb the electronic and vibrational states i...
This thesis focuses on the ultrafast dynamics of electronic excitations in solids and how they are i...
First-order metal-insulator transition (MIT) observed in strongly correlated systems such as vanadiu...
Studies of the ultrafast carrier dynamics of transition metal dichalcogenides have employed spatiall...
We present a detailed study of the photoinduced insulator-metal transition in VO2 with broadband tim...
Studies of the ultrafast carrier dynamics of transition metal dichalcogenides have employed spatiall...
Transition Metal Dichalcogenides (TMDs) represent a new frontier for optoelectronic device applicati...
\ua9 2019, The Author(s), under exclusive licence to Springer Nature Limited. Heterostructures of at...
The transition-metal dichalcogenide VSe2 exhibits an increased charge density wave transition temper...
Funding: VILLUM FONDEN through the Young Investigator Program (Grant. No. 15375) and the Centre of E...
The phase transition of VO<sub>2</sub> from a monoclinic insulator to a rutile metal, which occurs t...
Emergent phenomena driven by electronic reconstructions in oxide heterostructures have been intensiv...
Emergent phenomena driven by electronic reconstructions in oxide heterostructures have been intensiv...
We apply an intense infrared laser pulse in order to perturb the electronic and vibrational states i...
We apply an intense infrared laser pulse in order to perturb the electronic and vibrational states i...
We apply an intense infrared laser pulse in order to perturb the electronic and vibrational states i...
This thesis focuses on the ultrafast dynamics of electronic excitations in solids and how they are i...
First-order metal-insulator transition (MIT) observed in strongly correlated systems such as vanadiu...
Studies of the ultrafast carrier dynamics of transition metal dichalcogenides have employed spatiall...
We present a detailed study of the photoinduced insulator-metal transition in VO2 with broadband tim...
Studies of the ultrafast carrier dynamics of transition metal dichalcogenides have employed spatiall...
Transition Metal Dichalcogenides (TMDs) represent a new frontier for optoelectronic device applicati...
\ua9 2019, The Author(s), under exclusive licence to Springer Nature Limited. Heterostructures of at...