The possibility for helium-induced electronic transitions in a photo-excited atom is investigated using Ba+ excited to the 6p 2P state as a prototypical example. A diabatization scheme has been designed to obtain the necessary potential energy surfaces and couplings for complexes of Ba+ with an arbitrary number of helium atoms. It involves computing new He–Ba+ electronic wave functions and expanding them in determinants of the non-interacting complex. The 6p 2P 6s 2S photodissociation spectrum of He Ba+ calculated with this model shows very weak coupling for a single He atom. However, several electronic relaxation mechanisms are identified, which could potentially explain the expulsion of barium ions from helium nanodroplets observed experi...
We present an experimental study of the dynamics following the photoexcitation and subsequent photoi...
Highly excited states of rubidium (Rb) atoms attached to helium (He) nanodroplets are studied by two...
Author Institution: Institute of Experimental Physics, Graz University of Technology; Petersgasse 16...
The possibility for helium-induced electronic transitions in a photo-excited atom is investigated us...
The solvation of Ba+ ions created by the photoionization of barium atoms located on the surface of h...
Excitation spectra up to the ionization threshold are reported for barium atoms located on the surfa...
We present a joint experimental and theoretical study on the desolvation of Ba+ cations in 4He nanod...
The relaxation dynamics of superexcited superfluid He nanodroplets is thoroughly investigated by mea...
Spectroscopy of doped superfluid helium nanodroplets (He$_N$) gives information about the influence ...
Atomic ions and free electrons embedded in condensed helium play important role in modern research o...
Helium is the second lightest element and the second most abundant element in the universe. It is na...
The photoionization and photoelectron spectroscopy of pure He droplets are investigated at photon en...
The relaxation of photoexcited nanosystems is a fundamental process of light–matter interaction. Dep...
Metal atoms have proved to be sensitive probes of the properties of superfluid helium nanodroplets. ...
International audienceWe present theoretical studies of helium droplets and films doped with one ele...
We present an experimental study of the dynamics following the photoexcitation and subsequent photoi...
Highly excited states of rubidium (Rb) atoms attached to helium (He) nanodroplets are studied by two...
Author Institution: Institute of Experimental Physics, Graz University of Technology; Petersgasse 16...
The possibility for helium-induced electronic transitions in a photo-excited atom is investigated us...
The solvation of Ba+ ions created by the photoionization of barium atoms located on the surface of h...
Excitation spectra up to the ionization threshold are reported for barium atoms located on the surfa...
We present a joint experimental and theoretical study on the desolvation of Ba+ cations in 4He nanod...
The relaxation dynamics of superexcited superfluid He nanodroplets is thoroughly investigated by mea...
Spectroscopy of doped superfluid helium nanodroplets (He$_N$) gives information about the influence ...
Atomic ions and free electrons embedded in condensed helium play important role in modern research o...
Helium is the second lightest element and the second most abundant element in the universe. It is na...
The photoionization and photoelectron spectroscopy of pure He droplets are investigated at photon en...
The relaxation of photoexcited nanosystems is a fundamental process of light–matter interaction. Dep...
Metal atoms have proved to be sensitive probes of the properties of superfluid helium nanodroplets. ...
International audienceWe present theoretical studies of helium droplets and films doped with one ele...
We present an experimental study of the dynamics following the photoexcitation and subsequent photoi...
Highly excited states of rubidium (Rb) atoms attached to helium (He) nanodroplets are studied by two...
Author Institution: Institute of Experimental Physics, Graz University of Technology; Petersgasse 16...