The effect of electron-phonon coupling in materials can be interpreted as a dressing of the electronic structure by the lattice vibration, leading to vibrational replicas and hybridization of electronic states. In solids, a resonantly excited coherent phonon leads to a periodic oscillation of the atomic lattice in a crystal structure bringing the material into a nonequilibrium electronic configuration. Periodically oscillating quantum systems can be understood in terms of Floquet theory, which has a long tradition in the study of semiclassical light-matter interaction. Here, we show that the concepts of Floquet analysis can be applied to coherent lattice vibrations. This coupling leads to phonon-dressed quasi-particles imprinting specific s...
The search of new means of generating and controlling topological states of matter is at the front o...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
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...
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...
Floquet states are a topic of intense contemporary interest, which is often induced by coherent exte...
Floquet states are a topic of intense contemporary interest, which is often induced by coherent exte...
Ultrafast optical manipulation of ordered phases in strongly correlated materials is a topic of sign...
Ultrafast optical manipulation of ordered phases in strongly correlated materials is a topic of sign...
First, we study the nonequilibrium dynamics of photoinduced phase transitions in charge ordered (CO)...
First, we study the nonequilibrium dynamics of photoinduced phase transitions in charge ordered (CO)...
First, we study the nonequilibrium dynamics of photoinduced phase transitions in charge ordered (CO)...
We investigate an exact nonequilibrium solution of a two-site electron-phonon model, where an infrar...
The search of new means of generating and controlling topological states of matter is at the front o...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
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...
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...
Floquet states are a topic of intense contemporary interest, which is often induced by coherent exte...
Floquet states are a topic of intense contemporary interest, which is often induced by coherent exte...
Ultrafast optical manipulation of ordered phases in strongly correlated materials is a topic of sign...
Ultrafast optical manipulation of ordered phases in strongly correlated materials is a topic of sign...
First, we study the nonequilibrium dynamics of photoinduced phase transitions in charge ordered (CO)...
First, we study the nonequilibrium dynamics of photoinduced phase transitions in charge ordered (CO)...
First, we study the nonequilibrium dynamics of photoinduced phase transitions in charge ordered (CO)...
We investigate an exact nonequilibrium solution of a two-site electron-phonon model, where an infrar...
The search of new means of generating and controlling topological states of matter is at the front o...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...