The speed limit of optoelectronics
Light-field driven charge motion links semiconductor technology to electric fields with attosecond temporal control. Motivated by ultimate-speed electron-based signal processing, …
Light-field driven charge motion links semiconductor technology to electric fields with attosecond temporal control. Motivated by ultimate-speed electron-based signal processing, …
We present the generation of a supercontinuum soft-X-ray spectrum generated by high-harmonic generation driven by self-compressed 1450 nm pulses using the soliton effect. The …
Strong-field photoemission from nanostructures and the associated temporally modulated currents play a key role in the development of ultrafast vacuum optoelectronics. Optical …
The ability to measure and control the carrier–envelope phase (CEP) of few-cycle laser pulses is of paramount importance for both frequency metrology and attosecond science. Here, …
We demonstrate an attosecond one-photon photoconductive switch by injecting conduction band carriers in dielectrics using vacuum-ultraviolet light pulses. Femtosecond pulse- driven …