A nontrivial balance between Coulomb repulsion and kinematic effects determines the electronic structure of correlated electron materials. The use of electromagnetic fields strong enough to rival these native microscopic interactions allows us to study the electronic response as well as the time scales and energies involved in using quantum effects for possible applications. We use element-specific transient x-ray absorption spectroscopy and high-harmonic generation to measure the response to ultrashort off-resonant optical fields in the prototypical correlated electron insulator NiO. Surprisingly, fields of up to 0.22 V/Å lead to no detectable changes in the correlated Ni $3d$ orbitals contrary to previous predictions. A transient directio...
We explore the interplay of electron-electron correlations and surface effects in the prototypical c...
Multiorbital correlated materials are often on the verge of multiple electronic phases (metallic, in...
Emergent behaviors arising from strongly correlated electron materials continue to puzzle physicists...
A nontrivial balance between Coulomb repulsion and kinematic effects determines the electronic struc...
Engineering effective electronic parameters is a major focus in condensed matter physics. Their dyna...
The complex electronic structure of metallic ferromagnets is determined by a balance betweenexchange...
We demonstrate that a dynamical modification of the Hubbard U in the model charge-transfer insulator...
We use resonant inelastic x-ray scattering to study the electronic structure of nickel oxide, the pr...
Wide-band-gap insulators such as NiO offer the exciting prospect of coherently manipulating electron...
Wide band gap insulators such as NiO offer the exciting prospect of coherently manipulating electron...
Many remarkable properties of quantum materials emerge from states with intricate coupling between t...
We explore the interplay of electron-electron correlations and surface effects in the prototypical c...
Multiorbital correlated materials are often on the verge of multiple electronic phases (metallic, in...
Emergent behaviors arising from strongly correlated electron materials continue to puzzle physicists...
A nontrivial balance between Coulomb repulsion and kinematic effects determines the electronic struc...
Engineering effective electronic parameters is a major focus in condensed matter physics. Their dyna...
The complex electronic structure of metallic ferromagnets is determined by a balance betweenexchange...
We demonstrate that a dynamical modification of the Hubbard U in the model charge-transfer insulator...
We use resonant inelastic x-ray scattering to study the electronic structure of nickel oxide, the pr...
Wide-band-gap insulators such as NiO offer the exciting prospect of coherently manipulating electron...
Wide band gap insulators such as NiO offer the exciting prospect of coherently manipulating electron...
Many remarkable properties of quantum materials emerge from states with intricate coupling between t...
We explore the interplay of electron-electron correlations and surface effects in the prototypical c...
Multiorbital correlated materials are often on the verge of multiple electronic phases (metallic, in...
Emergent behaviors arising from strongly correlated electron materials continue to puzzle physicists...