The ultra-fast dynamics of He nanodroplets (103–105 atoms) in intense (1…7 ×1014 W/cm2), few-cycle (∼10 fs), infrared (∼790 nm) laser pulses has been investigated as a function of the number of dopant rare-gas atoms, the laser intensity and the rare-gas species. We find the “ignition” behaviour predicted by theory for 20 fs resulting in the complete ionisation and disintegration of the droplet, otherwise entirely transparent, initiated by just a few, less than 5 dopant atoms
Two-component nanoplasmas generated by strong-field ionization of doped helium nanodroplets are stud...
Helium nanodroplets are the smallest known objects exhibiting superfluidity, and they provide a uniq...
The ionization dynamics of helium droplets irradiated by intense, femtosecond extreme ultraviolet (X...
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 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...
We present the first sequential laser excitation of atom-doped helium nanodroplets. Rubidium atoms o...
We present the first sequential laser excitation of atom-doped helium nanodroplets. Rubidium atoms o...
In this dissertation, experimental studies on the interaction of intense few-cycle pulses with doped...
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...
Two-component nanoplasmas generated by strong-field ionization of doped helium nanodroplets are stud...
Helium nanodroplets are the smallest known objects exhibiting superfluidity, and they provide a uniq...
The ionization dynamics of helium droplets irradiated by intense, femtosecond extreme ultraviolet (X...
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 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...
We present the first sequential laser excitation of atom-doped helium nanodroplets. Rubidium atoms o...
We present the first sequential laser excitation of atom-doped helium nanodroplets. Rubidium atoms o...
In this dissertation, experimental studies on the interaction of intense few-cycle pulses with doped...
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...
Two-component nanoplasmas generated by strong-field ionization of doped helium nanodroplets are stud...
Helium nanodroplets are the smallest known objects exhibiting superfluidity, and they provide a uniq...
The ionization dynamics of helium droplets irradiated by intense, femtosecond extreme ultraviolet (X...