© 2022 authors. Published by the American Physical Society.Ultrafast lasers are an increasingly important tool to control and stabilize emergent phases in quantum materials. Among a variety of possible excitation protocols, a particularly intriguing route is the direct light engineering of microscopic electronic parameters, such as the electron hopping and the local Coulomb repulsion (Hubbard U). In this work, we use time-resolved x-ray absorption spectroscopy to demonstrate the light-induced renormalization of the Hubbard U in a cuprate superconductor, La1.905Ba0.095CuO4. We show that intense femtosecond laser pulses induce a substantial redshift of the upper Hubbard band while leaving the Zhang-Rice singlet energy unaffected. By comparing...
A better understanding of the electronic properties of high-transition-temperature superconductors i...
Engineering effective electronic parameters is a major focus in condensed matter physics. Their dyna...
Using time-resolved photo-induced reflectivity, we reported for the first time a systematic work on ...
Ultrafast techniques allow an unprecedented look at the electronic and bosonic interactions that gov...
In strongly correlated materials the electronic and optical properties are significantly affected by...
One of the pivotal questions in the physics of high-temperature superconductors is whether the low-e...
One of the most intriguing features of some high-temperature cuprate superconductors is the interpla...
Since the discovery of superconductivity, the potential applications of superconductorshas pushed th...
The possibility of driving phase transitions in low-density condensates through the loss of phase co...
The complex phase diagram of strongly correlated materials is regulated by the delicate interplay be...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2016.This electronic v...
We report femtosecond resonant soft x-ray diffraction measurements of the dynamics of the charge ord...
Quantum materials are amenable to nonequilibrium manipulation with light, enabling modification and ...
Elucidating the role of different degrees of freedom in a phase transition is crucial in the compreh...
The ultrafast optical response of noble metals and insulating cuprates have been studied and charact...
A better understanding of the electronic properties of high-transition-temperature superconductors i...
Engineering effective electronic parameters is a major focus in condensed matter physics. Their dyna...
Using time-resolved photo-induced reflectivity, we reported for the first time a systematic work on ...
Ultrafast techniques allow an unprecedented look at the electronic and bosonic interactions that gov...
In strongly correlated materials the electronic and optical properties are significantly affected by...
One of the pivotal questions in the physics of high-temperature superconductors is whether the low-e...
One of the most intriguing features of some high-temperature cuprate superconductors is the interpla...
Since the discovery of superconductivity, the potential applications of superconductorshas pushed th...
The possibility of driving phase transitions in low-density condensates through the loss of phase co...
The complex phase diagram of strongly correlated materials is regulated by the delicate interplay be...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2016.This electronic v...
We report femtosecond resonant soft x-ray diffraction measurements of the dynamics of the charge ord...
Quantum materials are amenable to nonequilibrium manipulation with light, enabling modification and ...
Elucidating the role of different degrees of freedom in a phase transition is crucial in the compreh...
The ultrafast optical response of noble metals and insulating cuprates have been studied and charact...
A better understanding of the electronic properties of high-transition-temperature superconductors i...
Engineering effective electronic parameters is a major focus in condensed matter physics. Their dyna...
Using time-resolved photo-induced reflectivity, we reported for the first time a systematic work on ...