The dynamics of electronically excited helium nanodroplets are studied by femtosecond time-resolved photoelectron imaging. EUV excitation into a broad absorption band centered around 23.8 eV leads to an indirect photoemission process that generates ultraslow photoelectrons. A 1.58 eV probe pulse transiently depletes the indirect photoemission signal for pump-probe time delays <200 fs and enhances the signal beyond this delay. The depletion is due to suppression of the indirect ionization process by the probe photon, which generates a broad, isotropically emitted photoelectron band. Similar time scales in the decay of the high energy photoelectron signal and the enhancement of the indirect photoemission signal suggest an internal relaxati...
The relaxation of photoexcited nanosystems is a fundamental process of light–matter interaction. Dep...
The relaxation of photoexcited nanosystems is a fundamental process of light-matter interaction. Dep...
The ionization dynamics of helium droplets irradiated by intense, femtosecond extreme ultraviolet (X...
The dynamics of electronically excited helium nanodroplets are studied by femtosecond time-resolved ...
photoionization dynamics of pure Helium nanodroplets below the atomic Helium IP in real-time. Using ...
Liquid helium nanodroplets, consisting of on average 2 × 10(6) atoms, are examined using femtosecond...
Abstract—A novel femtosecond extreme ultraviolet (EUV) ion-imaging technique is applied to study ult...
The relaxation of photoexcited nanosystems is a fundamental process of light\u2013matter interaction...
Helium nanodroplets are the smallest known objects exhibiting superfluidity, and they provide a uniq...
The relaxation of photoexcited nanosystems is a fundamental process of light-matter interaction. Dep...
Helium nanodroplets are the smallest known objects exhibiting superfluidity, and they provide a uniq...
The relaxation dynamics of superexcited superfluid He nanodroplets is thoroughly investigated by mea...
The ionization dynamics of helium droplets irradiated by intense, femtosecond extreme ultraviolet (X...
Photoexcitation of atoms solvated inside superfluid helium nanodroplets is investigated with femtose...
Photoexcitation of atoms solvated inside superfluid helium nanodroplets is investigated with femtose...
The relaxation of photoexcited nanosystems is a fundamental process of light–matter interaction. Dep...
The relaxation of photoexcited nanosystems is a fundamental process of light-matter interaction. Dep...
The ionization dynamics of helium droplets irradiated by intense, femtosecond extreme ultraviolet (X...
The dynamics of electronically excited helium nanodroplets are studied by femtosecond time-resolved ...
photoionization dynamics of pure Helium nanodroplets below the atomic Helium IP in real-time. Using ...
Liquid helium nanodroplets, consisting of on average 2 × 10(6) atoms, are examined using femtosecond...
Abstract—A novel femtosecond extreme ultraviolet (EUV) ion-imaging technique is applied to study ult...
The relaxation of photoexcited nanosystems is a fundamental process of light\u2013matter interaction...
Helium nanodroplets are the smallest known objects exhibiting superfluidity, and they provide a uniq...
The relaxation of photoexcited nanosystems is a fundamental process of light-matter interaction. Dep...
Helium nanodroplets are the smallest known objects exhibiting superfluidity, and they provide a uniq...
The relaxation dynamics of superexcited superfluid He nanodroplets is thoroughly investigated by mea...
The ionization dynamics of helium droplets irradiated by intense, femtosecond extreme ultraviolet (X...
Photoexcitation of atoms solvated inside superfluid helium nanodroplets is investigated with femtose...
Photoexcitation of atoms solvated inside superfluid helium nanodroplets is investigated with femtose...
The relaxation of photoexcited nanosystems is a fundamental process of light–matter interaction. Dep...
The relaxation of photoexcited nanosystems is a fundamental process of light-matter interaction. Dep...
The ionization dynamics of helium droplets irradiated by intense, femtosecond extreme ultraviolet (X...