Electron-phonon coupling directly determines the stability of cooperative order in solids, including superconductivity, charge, and spin density waves. Therefore, the ability to enhance or reduce electron-phonon coupling by optical driving may open up new possibilities to steer materials’ functionalities, potentially at high speeds. Here, we explore the response of bilayer graphene to dynamical modulation of the lattice, achieved by driving optically active in-plane bond stretching vibrations with femtosecond midinfrared pulses. The driven state is studied by two different ultrafast spectroscopic techniques. First, terahertz time-domain spectroscopy reveals that the Drude scattering rate decreases upon driving. Second, the relaxation rate o...
We report on transient absorption experiments performed at high optical excitation fluences and used...
The effect of electron-phonon coupling in materials can be interpreted as a dressing of the electron...
The effect of electron-phonon coupling in materials can be interpreted as a dressing of the electron...
Electron-phonon coupling directly determines the stability of cooperative order in solids, including...
[[abstract]]The relaxation dynamics of photoexcited carriers in a chemical vapor deposited graphene ...
We modulate the atomic structure of bilayer graphene by driving its lattice at resonance with the in...
We review our recent time- and angle-resolved photoemission spectroscopy experiments, which measure ...
We modulate the atomic structure of bilayer graphene by driving its lattice at resonance with the in...
We modulate the atomic structure of bilayer graphene by driving its lattice at resonance with the in...
Using time- and angle-resolved photoemission spectroscopy, we find that resonant excitation of the i...
Using time- and angle-resolved photoemission spectroscopy, we find that resonant excitation of the i...
We review our recent time- and angle-resolved photoemission spectroscopy experiments, which measure ...
We investigate an exact nonequilibrium solution of a two-site electron-phonon model, where an infrar...
We investigate an exact nonequilibrium solution of a two-site electron-phonon model, where an infrar...
peer reviewedWe report the ultrafast dynamics of the 47.4 THz coherent phonons of graphite interacti...
We report on transient absorption experiments performed at high optical excitation fluences and used...
The effect of electron-phonon coupling in materials can be interpreted as a dressing of the electron...
The effect of electron-phonon coupling in materials can be interpreted as a dressing of the electron...
Electron-phonon coupling directly determines the stability of cooperative order in solids, including...
[[abstract]]The relaxation dynamics of photoexcited carriers in a chemical vapor deposited graphene ...
We modulate the atomic structure of bilayer graphene by driving its lattice at resonance with the in...
We review our recent time- and angle-resolved photoemission spectroscopy experiments, which measure ...
We modulate the atomic structure of bilayer graphene by driving its lattice at resonance with the in...
We modulate the atomic structure of bilayer graphene by driving its lattice at resonance with the in...
Using time- and angle-resolved photoemission spectroscopy, we find that resonant excitation of the i...
Using time- and angle-resolved photoemission spectroscopy, we find that resonant excitation of the i...
We review our recent time- and angle-resolved photoemission spectroscopy experiments, which measure ...
We investigate an exact nonequilibrium solution of a two-site electron-phonon model, where an infrar...
We investigate an exact nonequilibrium solution of a two-site electron-phonon model, where an infrar...
peer reviewedWe report the ultrafast dynamics of the 47.4 THz coherent phonons of graphite interacti...
We report on transient absorption experiments performed at high optical excitation fluences and used...
The effect of electron-phonon coupling in materials can be interpreted as a dressing of the electron...
The effect of electron-phonon coupling in materials can be interpreted as a dressing of the electron...