The complex interplay among electronic, magnetic and lattice degrees of freedom in Mott-Hubbard materials leads to different types of insulator-to-metal transitions (IMT) which can be triggered by temperature, pressure, light irradiation and electric field. However, several questions remain open concerning the quantum or thermal nature of electric field-driven transition process. Here, using intense terahertz pulses, we reveal the emergence of an instantaneous purely-electronic IMT in the Mott-Hubbard vanadium sequioxide (V2O3) prototype material. While fast electronics allow thermal-driven transition involving Joule heating, which takes place after tens of picoseconds, terahertz electric field is able to induce a sub-picosecond electronic ...
The study of photoexcited strongly correlated materials is attracting growing interest since their r...
Ultrafast phase transitions induced by femtosecond light pulses present a new opportunity for manipu...
The study of photoexcited strongly correlated materials is attracting growing interest since their r...
International audienceThe complex interplay among electronic, magnetic and lattice degrees of freedo...
Vanadium dioxide (VO2), an archetypal correlated-electron material, undergoes an insulator-metal tra...
Vanadium dioxide (VO2), an archetypal correlated-electron material, undergoes an insulator-metal tra...
Vanadium dioxide (VO2), an archetypal correlated-electron material, undergoes an insulator-metal tra...
Vanadium dioxide (VO₂), an archetypal correlated-electron material, undergoes an insulator-metal tra...
Vanadium dioxide (VO2), an archetypal correlated-electron material, undergoes an insulator-metal tra...
The study of photoexcited strongly correlated materials is attracting growing interest since their r...
The study of photoexcited strongly correlated materials is attracting growing interest since their r...
Mott insulators are a perfect example of how local electronic correlations can change macroscopic pr...
Mott insulators are a perfect example of how local electronic correlations can change macroscopic pr...
We demonstrate that high-field terahertz (THz) pulses trigger transient insulator-to-metal transitio...
Resistive switching can be achieved in a Mott insulator by applying current/voltage, which triggers ...
The study of photoexcited strongly correlated materials is attracting growing interest since their r...
Ultrafast phase transitions induced by femtosecond light pulses present a new opportunity for manipu...
The study of photoexcited strongly correlated materials is attracting growing interest since their r...
International audienceThe complex interplay among electronic, magnetic and lattice degrees of freedo...
Vanadium dioxide (VO2), an archetypal correlated-electron material, undergoes an insulator-metal tra...
Vanadium dioxide (VO2), an archetypal correlated-electron material, undergoes an insulator-metal tra...
Vanadium dioxide (VO2), an archetypal correlated-electron material, undergoes an insulator-metal tra...
Vanadium dioxide (VO₂), an archetypal correlated-electron material, undergoes an insulator-metal tra...
Vanadium dioxide (VO2), an archetypal correlated-electron material, undergoes an insulator-metal tra...
The study of photoexcited strongly correlated materials is attracting growing interest since their r...
The study of photoexcited strongly correlated materials is attracting growing interest since their r...
Mott insulators are a perfect example of how local electronic correlations can change macroscopic pr...
Mott insulators are a perfect example of how local electronic correlations can change macroscopic pr...
We demonstrate that high-field terahertz (THz) pulses trigger transient insulator-to-metal transitio...
Resistive switching can be achieved in a Mott insulator by applying current/voltage, which triggers ...
The study of photoexcited strongly correlated materials is attracting growing interest since their r...
Ultrafast phase transitions induced by femtosecond light pulses present a new opportunity for manipu...
The study of photoexcited strongly correlated materials is attracting growing interest since their r...