Strongly correlated materials exhibit intriguing properties caused by intertwined microscopic interactions that are hard to disentangle in equilibrium. Employing nonequilibrium time-resolved photoemission spectroscopy on the quasi-two-dimensional transition-metal dichalcogenide 1T-TaS2, we identify a spectroscopic signature of doubly occupied sites (doublons) that reflects fundamental Mott physics. Doublon-hole recombination is estimated to occur on timescales of electronic hopping ℏ/J≈14 fs. Despite strong electron-phonon coupling, the dynamics can be explained by purely electronic effects captured by the single-band Hubbard model under the assumption of weak hole doping, in agreement with our static sample characterization. This sensitiv...
1T-TaSe2 is host to coexisting strongly correlated phases including charge density waves (CDWs) and ...
We investigate the perturbation and subsequent recovery of the correlated electronic ground state of...
The time-resolved determination of dynamics in complex materials is an important goal for understand...
Strongly correlated materials exhibit intriguing properties caused by intertwined microscopic inter...
Strongly correlated materials exhibit intriguing properties caused by intertwined microscopic intera...
Strongly correlated materials exhibit intriguing properties caused by intertwined microscopic intera...
We use time- and angle-resolved photoemission spectroscopy with sub-30-fs extreme-ultraviolet pulses...
The two-dimensional transition-metal dichalcogenide 1T−TaS2 is a complex material standing out for i...
Photoexcitation of the Mott insulator 1T-TaS2 by an intense laser pulse leads to an ultrafast transi...
Complex systems are characterized by strong coupling between different microscopic degrees of freedo...
We investigate the nonequilibrium electronic structure of 1T-TaS2 by time- and angle-resolved photoe...
Here we perform angle and time-resolved photoelectron spectroscopy on the commensurate Charge Densit...
The transient optical conductivity of photoexcited 1T−TaS2 is determined over a three-order-of-magni...
We investigate the perturbation and subsequent recovery of the correlated electronic ground state of...
We investigate the interplay of the electron-electron and electron-phonon interactions in the electr...
1T-TaSe2 is host to coexisting strongly correlated phases including charge density waves (CDWs) and ...
We investigate the perturbation and subsequent recovery of the correlated electronic ground state of...
The time-resolved determination of dynamics in complex materials is an important goal for understand...
Strongly correlated materials exhibit intriguing properties caused by intertwined microscopic inter...
Strongly correlated materials exhibit intriguing properties caused by intertwined microscopic intera...
Strongly correlated materials exhibit intriguing properties caused by intertwined microscopic intera...
We use time- and angle-resolved photoemission spectroscopy with sub-30-fs extreme-ultraviolet pulses...
The two-dimensional transition-metal dichalcogenide 1T−TaS2 is a complex material standing out for i...
Photoexcitation of the Mott insulator 1T-TaS2 by an intense laser pulse leads to an ultrafast transi...
Complex systems are characterized by strong coupling between different microscopic degrees of freedo...
We investigate the nonequilibrium electronic structure of 1T-TaS2 by time- and angle-resolved photoe...
Here we perform angle and time-resolved photoelectron spectroscopy on the commensurate Charge Densit...
The transient optical conductivity of photoexcited 1T−TaS2 is determined over a three-order-of-magni...
We investigate the perturbation and subsequent recovery of the correlated electronic ground state of...
We investigate the interplay of the electron-electron and electron-phonon interactions in the electr...
1T-TaSe2 is host to coexisting strongly correlated phases including charge density waves (CDWs) and ...
We investigate the perturbation and subsequent recovery of the correlated electronic ground state of...
The time-resolved determination of dynamics in complex materials is an important goal for understand...