Optical modulation of high harmonic generation (HHG) is of fundamental interest in science and technology, which can facilitate understanding of HHG generation mechanisms and expand the potential optoelectronic applications. However, the current established works have neither shown the advanced modulation performance nor provided a deep understanding of modulation mechanisms. In this work, taking wurtzite zinc oxide (ZnO) single crystal as a prototype, we have demonstrated an all-optical intensity modulation of high-order HHG with a response time of less than 0.2 ps and a depth of more than 95%, based on the pump-probe configuration with two different pumping wavelengths. Besides the achieved excellent modulation performance, we have also r...
We present a broadband (460-980 nm) analysis of the nonlinear absorption processes in bulk ZnO, a la...
Many linked processes occur concurrently in strongly excited semiconductors, such as interband and i...
Nanophotonics and metamaterials have revolutionized the way we think about optical space (epsilon,mu...
Optical modulation of high harmonic generation (HHG) is of fundamental interest in science and techn...
Optical modulation of high harmonic generation (HHG) at ultrashort timescales is of fundamental inte...
Ultrafast coherent phonon dynamics in ZnO is studied via high-order harmonic generation by intense m...
International audienceigh harmonic generation (HHG) in crystals has revealed a wealth of perspective...
We demonstrate high harmonic generation (HHG) into deep-UV range in a ZnO single crystal with resona...
High-order harmonic generation (HHG), resulting from the interaction of an intense laser field with ...
We generate high-order harmonics in a-cut (11-20) ZnO at a high repetition rate of 50 kHz, using the...
We generate high-order harmonics in ZnO using a mid-IR OPA with 50 kHz repetition rate. Nonperturbat...
Harmonic generation is a general feature of driven nonlinear systems. In particular high-order harmo...
In this contribution we experimental examine the ellipticity dependence of strong off resonance abso...
In this work, nonlinear optical properties of needle-shaped thin ZnO crystal rod with the diameter o...
At carrier densities above the Mott density Coulomb screening destroys the exciton resonance. This, ...
We present a broadband (460-980 nm) analysis of the nonlinear absorption processes in bulk ZnO, a la...
Many linked processes occur concurrently in strongly excited semiconductors, such as interband and i...
Nanophotonics and metamaterials have revolutionized the way we think about optical space (epsilon,mu...
Optical modulation of high harmonic generation (HHG) is of fundamental interest in science and techn...
Optical modulation of high harmonic generation (HHG) at ultrashort timescales is of fundamental inte...
Ultrafast coherent phonon dynamics in ZnO is studied via high-order harmonic generation by intense m...
International audienceigh harmonic generation (HHG) in crystals has revealed a wealth of perspective...
We demonstrate high harmonic generation (HHG) into deep-UV range in a ZnO single crystal with resona...
High-order harmonic generation (HHG), resulting from the interaction of an intense laser field with ...
We generate high-order harmonics in a-cut (11-20) ZnO at a high repetition rate of 50 kHz, using the...
We generate high-order harmonics in ZnO using a mid-IR OPA with 50 kHz repetition rate. Nonperturbat...
Harmonic generation is a general feature of driven nonlinear systems. In particular high-order harmo...
In this contribution we experimental examine the ellipticity dependence of strong off resonance abso...
In this work, nonlinear optical properties of needle-shaped thin ZnO crystal rod with the diameter o...
At carrier densities above the Mott density Coulomb screening destroys the exciton resonance. This, ...
We present a broadband (460-980 nm) analysis of the nonlinear absorption processes in bulk ZnO, a la...
Many linked processes occur concurrently in strongly excited semiconductors, such as interband and i...
Nanophotonics and metamaterials have revolutionized the way we think about optical space (epsilon,mu...