Few-femtosecond extreme ultraviolet (XUV) transient absorption spectroscopy, performed with optical 500-1000-nm supercontinuum and broadband XUV pulses (30-50 eV), simultaneously probes dynamics of photoexcited carriers in WS2 at the W O3 edge (37-45 eV) and carrier-induced modifications of core-exciton absorption at the WN6,7 edge (32-37 eV). Access to continuous core-to-conduction-band absorption features and discrete core-exciton transitions in the same XUV spectral region in a semiconductor provides a means to investigate the effect of carrier excitation on core-exciton dynamics. The core-level transient absorption spectra, measured with either pulse arriving first to explore both core-level and valence carrier dynamics, reveal that cor...
In recent years, hot injection synthesis has emerged as a promising route for the production of nano...
The motion of electrons and nuclei, or of charge carriers and lattice, respectively, in a solid syst...
Transition metal dichalcogenides (TMDs) are emerging as promising two-dimensional (2D) semiconductor...
Few-femtosecond extreme ultraviolet (XUV) transient absorption spectroscopy, performed with optical ...
Few-femtosecond extreme ultraviolet (XUV) transient absorption spectroscopy, performed with optical ...
Time-resolved soft-x-ray photoemission spectroscopy is used to simultaneously measure the ultrafast ...
With the ability to disentangle electronic transitions that occur on different elements and local el...
Semiconducting transition metal dichalcogenides (TMDs) have been applied as the active layer in phot...
© OSA 2018. Strong enhancement of exciton binding has been observed in valence-excitons in the optic...
Time-resolved soft-x-ray photoemission spectroscopy is used to simultaneously measure the ultrafast ...
Fundamental understandings on the dynamics of charge carriers and excitonic quasiparticles in semico...
Time-resolved soft-X-ray photoemission spectroscopy is used to simultaneously measure the ultrafast ...
Extreme ultraviolet (XUV) transient absorption spectroscopy is emerging as a powerful, element-speci...
We employ few-femtosecond extreme ultraviolet (XUV) transient absorption spectroscopy to reveal simu...
The creation of attosecond pulses using high harmonic generation (HHG) to produce extreme ultraviole...
In recent years, hot injection synthesis has emerged as a promising route for the production of nano...
The motion of electrons and nuclei, or of charge carriers and lattice, respectively, in a solid syst...
Transition metal dichalcogenides (TMDs) are emerging as promising two-dimensional (2D) semiconductor...
Few-femtosecond extreme ultraviolet (XUV) transient absorption spectroscopy, performed with optical ...
Few-femtosecond extreme ultraviolet (XUV) transient absorption spectroscopy, performed with optical ...
Time-resolved soft-x-ray photoemission spectroscopy is used to simultaneously measure the ultrafast ...
With the ability to disentangle electronic transitions that occur on different elements and local el...
Semiconducting transition metal dichalcogenides (TMDs) have been applied as the active layer in phot...
© OSA 2018. Strong enhancement of exciton binding has been observed in valence-excitons in the optic...
Time-resolved soft-x-ray photoemission spectroscopy is used to simultaneously measure the ultrafast ...
Fundamental understandings on the dynamics of charge carriers and excitonic quasiparticles in semico...
Time-resolved soft-X-ray photoemission spectroscopy is used to simultaneously measure the ultrafast ...
Extreme ultraviolet (XUV) transient absorption spectroscopy is emerging as a powerful, element-speci...
We employ few-femtosecond extreme ultraviolet (XUV) transient absorption spectroscopy to reveal simu...
The creation of attosecond pulses using high harmonic generation (HHG) to produce extreme ultraviole...
In recent years, hot injection synthesis has emerged as a promising route for the production of nano...
The motion of electrons and nuclei, or of charge carriers and lattice, respectively, in a solid syst...
Transition metal dichalcogenides (TMDs) are emerging as promising two-dimensional (2D) semiconductor...