With few-cycle laser oscillator pulses at 800 nm we observe strong-field and attosecond physics phenomena in electron spectra recorded at a nanoscale tungsten tip. We observe the rescattering plateau as well as a strong carrier-envelope phase dependence of the spectra. We model the results with the semiclassical three-step model as well as with time-dependent density functional theory
The response of solids to electromagnetic fields is of crucial importance in many areas of science a...
The response of solids to electromagnetic fields is of crucial importance in many areas of science a...
Comprehensive knowledge of the dynamic behaviour of electrons in condensed-matter systems is pertine...
With few-cycle laser oscillator pulses at 800 nm we observe strong-field and attosecond physics phen...
Abstract. With few-cycle laser oscillator pulses at 800 nm we observe strong-field and attosecond ph...
Attosecond science is based on electron dynamics driven by a strong optical electric field and has e...
Recently two emerging areas of research, attosecond and nanoscale physics, have started to come toge...
Recently two emerging areas of research, attosecond and nanoscale physics, have started to come toge...
Recently two emerging areas of research, attosecond and nanoscale physics, have started to come toge...
Recently two emerging areas of research, attosecond and nanoscale physics, have started to come toge...
Recently two emerging areas of research, attosecond and nanoscale physics, have started to come toge...
We report on two experiments about the interaction of femtosecond laser pulses with nano-scale struc...
Probing and controlling electrons and nuclei in matter at the attosecond timescale became possible w...
Cavalieri AL, Müller N, Uphues T, et al. Attosecond spectroscopy in condensed matter. Nature. 2007;4...
Recent attosecond experiments have been based on precise GV/cm electric field synthesis (see e.g.[1]...
The response of solids to electromagnetic fields is of crucial importance in many areas of science a...
The response of solids to electromagnetic fields is of crucial importance in many areas of science a...
Comprehensive knowledge of the dynamic behaviour of electrons in condensed-matter systems is pertine...
With few-cycle laser oscillator pulses at 800 nm we observe strong-field and attosecond physics phen...
Abstract. With few-cycle laser oscillator pulses at 800 nm we observe strong-field and attosecond ph...
Attosecond science is based on electron dynamics driven by a strong optical electric field and has e...
Recently two emerging areas of research, attosecond and nanoscale physics, have started to come toge...
Recently two emerging areas of research, attosecond and nanoscale physics, have started to come toge...
Recently two emerging areas of research, attosecond and nanoscale physics, have started to come toge...
Recently two emerging areas of research, attosecond and nanoscale physics, have started to come toge...
Recently two emerging areas of research, attosecond and nanoscale physics, have started to come toge...
We report on two experiments about the interaction of femtosecond laser pulses with nano-scale struc...
Probing and controlling electrons and nuclei in matter at the attosecond timescale became possible w...
Cavalieri AL, Müller N, Uphues T, et al. Attosecond spectroscopy in condensed matter. Nature. 2007;4...
Recent attosecond experiments have been based on precise GV/cm electric field synthesis (see e.g.[1]...
The response of solids to electromagnetic fields is of crucial importance in many areas of science a...
The response of solids to electromagnetic fields is of crucial importance in many areas of science a...
Comprehensive knowledge of the dynamic behaviour of electrons in condensed-matter systems is pertine...