We demonstrate that a dynamical modification of the Hubbard U in the model charge-transfer insulator NiO can be observed with state-of-the-art time-resolved absorption spectroscopy. Using a self-consistent time-dependent density functional theory plus U computational framework, we show that the dynamical modulation of screening and Hubbard U significantly changes the transient optical spectroscopy. Whereas we find the well-known dynamical Franz-Keldysh effect when the U is frozen, we observe a dynamical band-gap renormalization for dynamical U. The renormalization of the optical gap is found to be smaller than the renormalization of U. This work opens up the possibility of driving a light-induced transition from a charge transfer into a Mot...
We investigate how fast and how effective photocarrier excitation can modify the exchange interactio...
We study the dynamical phase transition out of an excitonic insulator phase after photoexcitation u...
Recent advances in laser technology allow us to follow electronic motion at its natural time-scale w...
Engineering effective electronic parameters is a major focus in condensed matter physics. Their dyna...
A nontrivial balance between Coulomb repulsion and kinematic effects determines the electronic struc...
© 2022 American Physical Society.The fate of a Mott insulator under strong low frequency optical dri...
By using nearly-single-cycle optical pulses in the near infrared, we measure the time-dependent opti...
We use a nonequilibrium implementation of extended dynamical mean-field theory in combination with a...
Many linked processes occur concurrently in strongly excited semiconductors, such as interband and i...
This thesis focuses on the ultrafast dynamics of electronic excitations in solids and how they are i...
The fate of a Mott insulator under strong low frequency optical driving conditions is a fundamental ...
Competition between electron localization and delocalization in Mott insulators underpins the physic...
Transient absorption (TA) spectroscopy is uniquely suited for understanding kinetic processes initia...
Revealing the nature of charge excitations in strongly correlated electron systems is crucial to und...
To what extent do intra- or inter-band transitions dominate the optical response of dielectrics when...
We investigate how fast and how effective photocarrier excitation can modify the exchange interactio...
We study the dynamical phase transition out of an excitonic insulator phase after photoexcitation u...
Recent advances in laser technology allow us to follow electronic motion at its natural time-scale w...
Engineering effective electronic parameters is a major focus in condensed matter physics. Their dyna...
A nontrivial balance between Coulomb repulsion and kinematic effects determines the electronic struc...
© 2022 American Physical Society.The fate of a Mott insulator under strong low frequency optical dri...
By using nearly-single-cycle optical pulses in the near infrared, we measure the time-dependent opti...
We use a nonequilibrium implementation of extended dynamical mean-field theory in combination with a...
Many linked processes occur concurrently in strongly excited semiconductors, such as interband and i...
This thesis focuses on the ultrafast dynamics of electronic excitations in solids and how they are i...
The fate of a Mott insulator under strong low frequency optical driving conditions is a fundamental ...
Competition between electron localization and delocalization in Mott insulators underpins the physic...
Transient absorption (TA) spectroscopy is uniquely suited for understanding kinetic processes initia...
Revealing the nature of charge excitations in strongly correlated electron systems is crucial to und...
To what extent do intra- or inter-band transitions dominate the optical response of dielectrics when...
We investigate how fast and how effective photocarrier excitation can modify the exchange interactio...
We study the dynamical phase transition out of an excitonic insulator phase after photoexcitation u...
Recent advances in laser technology allow us to follow electronic motion at its natural time-scale w...