We characterized electronic dipole oscillations in chromium doped sapphire (Cr:Al2O3) using Fourier transform extreme ultraviolet attosecond spectroscopy (FTXUV) combined with an isolated attosecond pulse, which reveals the electric band-structure and dephasing process in solids
Extreme ultraviolet (XUV) transient reflectivity around the germanium M_(4,5) edge (3d core-level ...
High harmonic extreme ultraviolet pulses are used to investigate time dynamics in oxide materials an...
The sub-cycle interaction of light and matter is one of the key frontiers of inquiry made accessible...
We characterized electronic dipole oscillations in chromium doped sapphire (Cr:Al2O3) using Fourier ...
To what extent do intra- or inter-band transitions dominate the optical response of dielectrics when...
High-harmonic generation (HHG) produces ultrashort pulses of extreme ultraviolet radiation (XUV), wh...
The release of conduction-band electrons from a metal surface by a subfemtosecond extreme ultraviole...
The interaction of strong near-infrared (NIR) laser pulses with wide-bandgap dielectrics produces hi...
The creation of attosecond pulses using high harmonic generation (HHG) to produce extreme ultraviole...
The response of solids to electromagnetic fields is of crucial importance in many areas of science a...
The response of solids to electromagnetic fields is of crucial importance in many areas of science a...
Attosecond science, utilizing short bursts of extreme ultraviolet light, has opened up a fascinating...
Excitation of ionic solids with extreme ultraviolet pulses creates localized core-level excitons, wh...
We present a time-dependent method for calculating the energy-dependent atomic dipole phase that an ...
Transition metals, with their densely confined and strongly coupled valence electrons, are key const...
Extreme ultraviolet (XUV) transient reflectivity around the germanium M_(4,5) edge (3d core-level ...
High harmonic extreme ultraviolet pulses are used to investigate time dynamics in oxide materials an...
The sub-cycle interaction of light and matter is one of the key frontiers of inquiry made accessible...
We characterized electronic dipole oscillations in chromium doped sapphire (Cr:Al2O3) using Fourier ...
To what extent do intra- or inter-band transitions dominate the optical response of dielectrics when...
High-harmonic generation (HHG) produces ultrashort pulses of extreme ultraviolet radiation (XUV), wh...
The release of conduction-band electrons from a metal surface by a subfemtosecond extreme ultraviole...
The interaction of strong near-infrared (NIR) laser pulses with wide-bandgap dielectrics produces hi...
The creation of attosecond pulses using high harmonic generation (HHG) to produce extreme ultraviole...
The response of solids to electromagnetic fields is of crucial importance in many areas of science a...
The response of solids to electromagnetic fields is of crucial importance in many areas of science a...
Attosecond science, utilizing short bursts of extreme ultraviolet light, has opened up a fascinating...
Excitation of ionic solids with extreme ultraviolet pulses creates localized core-level excitons, wh...
We present a time-dependent method for calculating the energy-dependent atomic dipole phase that an ...
Transition metals, with their densely confined and strongly coupled valence electrons, are key const...
Extreme ultraviolet (XUV) transient reflectivity around the germanium M_(4,5) edge (3d core-level ...
High harmonic extreme ultraviolet pulses are used to investigate time dynamics in oxide materials an...
The sub-cycle interaction of light and matter is one of the key frontiers of inquiry made accessible...