Doping a helium nanodroplet with only a tiny xenon cluster of a few atoms sparks complete ionization of the droplet at laser intensities below the ionization threshold of helium atoms. As a result, the intrinsically inert and transparent droplet turns into a fast and strong absorber of infrared light. Microscopic calculations reveal a two-step mechanism to be responsible for the dramatic change: Avalanchelike ionization of the helium atoms on a femtosecond time scale, driven by field ionization due to the quickly charged xenon core, is followed by resonant absorption enabled by an unusual cigar-shaped nanoplasma within the droplet
Abstract. Two-component nanoplasmas generated by strong-field ionization of doped helium nanodroplet...
Metal atoms have proved to be sensitive probes of the properties of superfluid helium nanodroplets. ...
Metal atoms have proved to be sensitive probes of the properties of superfluid helium nanodroplets. ...
Two-component nanoplasmas generated by strong-field ionization of doped helium nanodroplets are stud...
Energy absorption of xenon clusters embedded in helium nanodroplets from strong femtosecond laser pu...
In this dissertation, experimental studies on the interaction of intense few-cycle pulses with doped...
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...
In this dissertation, experimental studies on the interaction of intense few-cycle pulses with doped...
Die vorliegende Arbeit beschreibt experimentelle Untersuchungen zur Wechselwirkung ultrakurzer (10 f...
We demonstrate ultrafast resonant energy absorption of rare-gas doped He nanodroplets from intense f...
We explore the light induced dynamics in superfluid helium nanodroplets with wide-angle scattering i...
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...
Abstract. Two-component nanoplasmas generated by strong-field ionization of doped helium nanodroplet...
Metal atoms have proved to be sensitive probes of the properties of superfluid helium nanodroplets. ...
Metal atoms have proved to be sensitive probes of the properties of superfluid helium nanodroplets. ...
Two-component nanoplasmas generated by strong-field ionization of doped helium nanodroplets are stud...
Energy absorption of xenon clusters embedded in helium nanodroplets from strong femtosecond laser pu...
In this dissertation, experimental studies on the interaction of intense few-cycle pulses with doped...
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...
In this dissertation, experimental studies on the interaction of intense few-cycle pulses with doped...
Die vorliegende Arbeit beschreibt experimentelle Untersuchungen zur Wechselwirkung ultrakurzer (10 f...
We demonstrate ultrafast resonant energy absorption of rare-gas doped He nanodroplets from intense f...
We explore the light induced dynamics in superfluid helium nanodroplets with wide-angle scattering i...
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...
Abstract. Two-component nanoplasmas generated by strong-field ionization of doped helium nanodroplet...
Metal atoms have proved to be sensitive probes of the properties of superfluid helium nanodroplets. ...
Metal atoms have proved to be sensitive probes of the properties of superfluid helium nanodroplets. ...