The coupling of excitons with atomic vibrations plays a pivotal role on the nonequilibrium optical properties of layered semiconductors. However, how exciton-phonon coupling manifests in the time and energy domains is still an open debate between experiment and theory. By means of time-resolved broadband optical reflectivity combined with ab initio calculations of a bismuth tri-iodide single crystal, we set the spectral fingerprints for the optical detection of exciton-phonon coupling in layered semiconductors. Our joint experimental and theoretical effort allows us to unravel the impact of exciton-phonon coupling by microscopically relating the photoinduced coherent energy modulation of the excitonic resonance to coherent optical phonons. ...
We investigate the excitation of phonons in photoexcited antimony and demonstrate that the entire el...
The way nuclear motion affects electronic responses has become a very hot topic in materials science...
Atomically thin, semiconducting transition metal dichalogenides (TMDs), a special class of layered s...
: The coupling of the electron system to lattice vibrations and their time-dependent control and det...
In this paper we present experimental and theoretical studies of reflectivity oscillations of an opt...
Controlling the excitonic optical properties of room temperature semiconductors using time-dependent...
Heterostructures of layered transition metal dichalcogenides (TMDs) host long-lived, tunable exciton...
Using 28-fs, 800-nm laser pulses we have coherently excited and subsequently probed, with time-depe...
International audienceWe investigate the temporal evolution of the electronic states at the bismuth ...
We present a transient absorption setup combining broadband detection over the visible-UV range with...
Ultrafast pump-probe spectroscopy is a powerful experimental technique to study the light-matter int...
The strength of the electron-hole interaction in bulk semiconductors is not only determined by the d...
Coherent phonons are an excellent tool to investigate the interplay between electronic and structura...
We study the dynamics of excitonic insulators coupled to phonons using the time- dependent mean-fiel...
The authors review the physics of ultrafast dynamics in semiconductors and their heterostructures, i...
We investigate the excitation of phonons in photoexcited antimony and demonstrate that the entire el...
The way nuclear motion affects electronic responses has become a very hot topic in materials science...
Atomically thin, semiconducting transition metal dichalogenides (TMDs), a special class of layered s...
: The coupling of the electron system to lattice vibrations and their time-dependent control and det...
In this paper we present experimental and theoretical studies of reflectivity oscillations of an opt...
Controlling the excitonic optical properties of room temperature semiconductors using time-dependent...
Heterostructures of layered transition metal dichalcogenides (TMDs) host long-lived, tunable exciton...
Using 28-fs, 800-nm laser pulses we have coherently excited and subsequently probed, with time-depe...
International audienceWe investigate the temporal evolution of the electronic states at the bismuth ...
We present a transient absorption setup combining broadband detection over the visible-UV range with...
Ultrafast pump-probe spectroscopy is a powerful experimental technique to study the light-matter int...
The strength of the electron-hole interaction in bulk semiconductors is not only determined by the d...
Coherent phonons are an excellent tool to investigate the interplay between electronic and structura...
We study the dynamics of excitonic insulators coupled to phonons using the time- dependent mean-fiel...
The authors review the physics of ultrafast dynamics in semiconductors and their heterostructures, i...
We investigate the excitation of phonons in photoexcited antimony and demonstrate that the entire el...
The way nuclear motion affects electronic responses has become a very hot topic in materials science...
Atomically thin, semiconducting transition metal dichalogenides (TMDs), a special class of layered s...