Two-component nanoplasmas generated by strong-field ionization of doped helium nanodroplets are studied in a pump–probe experiment using few-cycle laser pulses in combination with molecular dynamics simulations. High yields of helium ions and a pronounced resonance structure in the pump–probe transients which is droplet size dependent reveal the evolution of the dopant-induced helium nanoplasma with an active role for He shells in the ensuing dynamics. The pump–probe dynamics is interpreted in terms of strong inner ionization by the pump pulse and resonant heating by the probe pulse which controls the final charge states detected via the frustration of electron–ion recombination
The charging dynamics of helium droplets driven by embedded xenon cluster ignition in strong laser f...
Helium nanodroplets are the smallest known objects exhibiting superfluidity, and they provide a uniq...
Doping a helium nanodroplet with only a tiny xenon cluster of a few atoms sparks complete ionization...
Two-component nanoplasmas generated by strong-field ionization of doped helium nanodroplets are stud...
Two-component nanoplasmas generated by strong-field ionization of doped helium nanodroplets are stud...
Abstract. Two-component nanoplasmas generated by strong-field ionization of doped helium nanodroplet...
Two-component nanoplasmas generated by strong-field ionization of doped helium nanodroplets are stud...
In this dissertation, experimental studies on the interaction of intense few-cycle pulses with doped...
We demonstrate ultrafast resonant energy absorption of rare-gas doped He nanodroplets from intense f...
We demonstrate ultrafast resonant energy absorption of rare-gas doped He nanodroplets from intense f...
We demonstrate ultrafast resonant energy absorption of rare-gas doped He nanodroplets from intense f...
We present single-shot electron velocity-map images of nanoplasmas generated from doped helium nanod...
We demonstrate ultrafast resonant energy absorption of rare-gas doped He nanodroplets from intense f...
We demonstrate ultrafast resonant energy absorption of rare-gas doped He nanodroplets from intense f...
In this dissertation, experimental studies on the interaction of intense few-cycle pulses with doped...
The charging dynamics of helium droplets driven by embedded xenon cluster ignition in strong laser f...
Helium nanodroplets are the smallest known objects exhibiting superfluidity, and they provide a uniq...
Doping a helium nanodroplet with only a tiny xenon cluster of a few atoms sparks complete ionization...
Two-component nanoplasmas generated by strong-field ionization of doped helium nanodroplets are stud...
Two-component nanoplasmas generated by strong-field ionization of doped helium nanodroplets are stud...
Abstract. Two-component nanoplasmas generated by strong-field ionization of doped helium nanodroplet...
Two-component nanoplasmas generated by strong-field ionization of doped helium nanodroplets are stud...
In this dissertation, experimental studies on the interaction of intense few-cycle pulses with doped...
We demonstrate ultrafast resonant energy absorption of rare-gas doped He nanodroplets from intense f...
We demonstrate ultrafast resonant energy absorption of rare-gas doped He nanodroplets from intense f...
We demonstrate ultrafast resonant energy absorption of rare-gas doped He nanodroplets from intense f...
We present single-shot electron velocity-map images of nanoplasmas generated from doped helium nanod...
We demonstrate ultrafast resonant energy absorption of rare-gas doped He nanodroplets from intense f...
We demonstrate ultrafast resonant energy absorption of rare-gas doped He nanodroplets from intense f...
In this dissertation, experimental studies on the interaction of intense few-cycle pulses with doped...
The charging dynamics of helium droplets driven by embedded xenon cluster ignition in strong laser f...
Helium nanodroplets are the smallest known objects exhibiting superfluidity, and they provide a uniq...
Doping a helium nanodroplet with only a tiny xenon cluster of a few atoms sparks complete ionization...