The observation and manipulation of electron dynamics in matter call for attosecond light pulses, routinely available from high-order harmonic generation driven by few-femtosecond lasers. However, the energy limitation of these lasers supports only weak sources and correspondingly linear attosecond studies. Here we report on an optical parametric synthesizer designed for nonlinear attosecond optics and relativistic laser-plasma physics. This synthesizer uniquely combines ultra-relativistic focused intensities of about 1020 W/cm2 with a pulse duration of sub-two carrier-wave cycles. The coherent combination of two sequentially amplified and complementary spectral ranges yields sub-5-fs pulses with multi-TW peak power. The application of this...
The study of core electron dynamics through nonlinear spectroscopy requires intense isolated attosec...
The study of core electron dynamics through nonlinear spectroscopy requires intense isolated attosec...
The study of core electron dynamics through nonlinear spectroscopy requires intense isolated attosec...
The observation and manipulation of electron dynamics in matter call for attosecond light pulses, ro...
The observation and manipulation of electron dynamics in matter call for attosecond light pulses, ro...
The observation and manipulation of electron dynamics in matter call for attosecond light pulses, ro...
The observation and manipulation of electron dynamics in matter call for attosecond light pulses, ro...
The observation and manipulation of electron dynamics in matter call for attosecond light pulses, ro...
The observation and manipulation of electron dynamics in matter call for attosecond light pulses, ro...
The observation and manipulation of electron dynamics in matter call for attosecond light pulses, ro...
The observation and manipulation of electron dynamics in matter call for attosecond light pulses, ro...
The observation and manipulation of electron dynamics in matter call for attosecond light pulses, ro...
DFG [Transregio TR18]; Munich Centre for Advanced Photonics (MAP); Laserlab-Europe [284464]; Euratom...
The study of core electron dynamics through nonlinear spectroscopy requires intense isolated attosec...
The study of core electron dynamics through nonlinear spectroscopy requires intense isolated attosec...
The study of core electron dynamics through nonlinear spectroscopy requires intense isolated attosec...
The study of core electron dynamics through nonlinear spectroscopy requires intense isolated attosec...
The study of core electron dynamics through nonlinear spectroscopy requires intense isolated attosec...
The observation and manipulation of electron dynamics in matter call for attosecond light pulses, ro...
The observation and manipulation of electron dynamics in matter call for attosecond light pulses, ro...
The observation and manipulation of electron dynamics in matter call for attosecond light pulses, ro...
The observation and manipulation of electron dynamics in matter call for attosecond light pulses, ro...
The observation and manipulation of electron dynamics in matter call for attosecond light pulses, ro...
The observation and manipulation of electron dynamics in matter call for attosecond light pulses, ro...
The observation and manipulation of electron dynamics in matter call for attosecond light pulses, ro...
The observation and manipulation of electron dynamics in matter call for attosecond light pulses, ro...
The observation and manipulation of electron dynamics in matter call for attosecond light pulses, ro...
DFG [Transregio TR18]; Munich Centre for Advanced Photonics (MAP); Laserlab-Europe [284464]; Euratom...
The study of core electron dynamics through nonlinear spectroscopy requires intense isolated attosec...
The study of core electron dynamics through nonlinear spectroscopy requires intense isolated attosec...
The study of core electron dynamics through nonlinear spectroscopy requires intense isolated attosec...
The study of core electron dynamics through nonlinear spectroscopy requires intense isolated attosec...
The study of core electron dynamics through nonlinear spectroscopy requires intense isolated attosec...