The transient optical conductivity of photoexcited 1T−TaS2 is determined over a three-order-of-magnitude frequency range. Prompt collapse and recovery of the Mott gap is observed. However, we find important differences between this transient metallic state and that seen across the thermally driven insulator-metal transition. Suppressed low-frequency conductivity, Fano phonon line shapes, and a midinfrared absorption band point to polaronic transport. This is explained by noting that the photoinduced metallic state of 1T−TaS2 is one in which the Mott gap is melted but the lattice retains its low-temperature symmetry, a regime only accessible by photodoping
We investigate the properties of the metallic state obtained by photodoping carriers into a Mott ins...
Strongly correlated materials exhibit intriguing properties caused by intertwined microscopic inter...
Photoexcitation of the Mott insulator 1T-TaS2 by an intense laser pulse leads to an ultrafast transi...
The transient optical conductivity of photoexcited 1T-TaS2 is determined over a three-order-of-magni...
The transient optical conductivity of photoexcited 1T-TaS2 is determined over a three-order-of-magni...
The transient optical conductivity of photoexcited 1T-TaS2 is determined over a three-order-of-magni...
The transient optical conductivity of photoexcited 1T−TaS<sub>2</sub> is determined over a three-ord...
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...
The two-dimensional transition-metal dichalcogenide 1T−TaS2 is a complex material standing out for i...
The time-resolved determination of dynamics in complex materials is an important goal for understand...
We use time- and angle-resolved photoemission spectroscopy with sub-30-fs extreme-ultraviolet pulses...
We investigate the nonequilibrium electronic structure of 1T-TaS2 by time- and angle-resolved photoe...
Strongly correlated materials exhibit intriguing properties caused by intertwined microscopic intera...
The time-resolved determination of dynamics in complex materials is an important goal for understand...
We investigate the properties of the metallic state obtained by photodoping carriers into a Mott ins...
Strongly correlated materials exhibit intriguing properties caused by intertwined microscopic inter...
Photoexcitation of the Mott insulator 1T-TaS2 by an intense laser pulse leads to an ultrafast transi...
The transient optical conductivity of photoexcited 1T-TaS2 is determined over a three-order-of-magni...
The transient optical conductivity of photoexcited 1T-TaS2 is determined over a three-order-of-magni...
The transient optical conductivity of photoexcited 1T-TaS2 is determined over a three-order-of-magni...
The transient optical conductivity of photoexcited 1T−TaS<sub>2</sub> is determined over a three-ord...
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...
The two-dimensional transition-metal dichalcogenide 1T−TaS2 is a complex material standing out for i...
The time-resolved determination of dynamics in complex materials is an important goal for understand...
We use time- and angle-resolved photoemission spectroscopy with sub-30-fs extreme-ultraviolet pulses...
We investigate the nonequilibrium electronic structure of 1T-TaS2 by time- and angle-resolved photoe...
Strongly correlated materials exhibit intriguing properties caused by intertwined microscopic intera...
The time-resolved determination of dynamics in complex materials is an important goal for understand...
We investigate the properties of the metallic state obtained by photodoping carriers into a Mott ins...
Strongly correlated materials exhibit intriguing properties caused by intertwined microscopic inter...
Photoexcitation of the Mott insulator 1T-TaS2 by an intense laser pulse leads to an ultrafast transi...