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Featured researches published by Günter Krois.


Journal of Physical Chemistry A | 2013

Spectroscopy of Cold LiCa Molecules Formed on Helium Nanodroplets

Günter Krois; Johann Valentin Pototschnig; Florian Lackner; Wolfgang E. Ernst

We report on the formation of mixed alkali–alkaline earth molecules (LiCa) on helium nanodroplets and present a comprehensive experimental and theoretical study of the ground and excited states of LiCa. Resonance enhanced multiphoton ionization time-of-flight (REMPI-TOF) spectroscopy and laser induced fluorescence (LIF) spectroscopy were used for the experimental investigation of LiCa from 15000 to 25500 cm–1. The 42Σ+ and 32Π states show a vibrational structure accompanied by distinct phonon wings, which allows us to determine molecular parameters as well as to study the interaction of the molecule with the helium droplet. Higher excited states (42Π, 52Σ+, 52Π, and 62Σ+) are not vibrationally resolved and vibronic transitions start to overlap. The experimental spectrum is well reproduced by high-level ab initio calculations. By using a multireference configuration interaction (MRCI) approach, we calculated the 19 lowest lying potential energy curves (PECs) of the LiCa molecule. On the basis of these calculations, we could identify previously unobserved transitions. Our results demonstrate that the helium droplet isolation approach is a powerful method for the characterization of tailor-made alkali–alkaline earth molecules. In this way, important contributions can be made to the search for optimal pathways toward the creation of ultracold alkali–alkaline earth ground state molecules from the corresponding atomic species. Furthermore, a test for PECs calculated by ab initio methods is provided.


Journal of Physical Chemistry Letters | 2012

Rubidium on Helium Droplets: Analysis of an Exotic Rydberg Complex for n* < 20 and 0 ≤ l ≤ 3

Florian Lackner; Günter Krois; Markus Koch; Wolfgang E. Ernst

Rubidium atom Rydberg states perturbed by helium droplets of different sizes provide insight into the role of a nanosized dielectric on the Coulomb potential. The observation of droplet size-dependent shifts of excited states with respect to bare atom states is explained by a decreased quantum defect and a lowered ionization threshold. Within the scope of a Rydberg model, we demonstrate that quantum defects and ionization potentials are constant for each specific Rydberg series, which confirms the Rydberg character of excited Rubidium states on helium droplets. A set of six Rydberg series could be identified. Individual Rydberg states are observed with effective principal quantum numbers up to n* ≈ 19 and l ≤ 3, for which the expectation value of the electron orbital radius is about 10 times larger than the droplet radius.


Molecular Physics | 2013

Rydberg–Ritz analysis and quantum defects for Rb and Cs atoms on helium nanodroplets

Florian Lackner; Günter Krois; Wolfgang E. Ernst

A Rydberg–Ritz approach is used for the interpretation of Rb–He and Cs–He Rydberg states and Rydberg series. Variations of the quantum defects within a Rydberg series give insight into the interaction between the alkali atom’s valence electron and the superfluid helium droplet. A screening of the valence electron from the alkali atom core by the helium droplet is observed for high Rydberg states. For states with lower principal quantum number, the effect decreases and the quantum defects are found to lie closer to free atom values, indicating an increased probability for the electron to be found inside the alkali atom core. An investigation of the spin–orbit splitting of the Cs–He nP(2Π) components reveals that the splitting of the lowest 2Π states is more atom-like [Hund’s case (c) coupling] than at higher n states [Hund’s case (a) coupling]. In addition, we report a detailed study of the droplet size dependence of Ak–He Rydberg series on the example of the Rb–He D(Δ) series. Higher Rydberg states of this series are strongly redshifted, which is also related to the screening effect.


Journal of Physical Chemistry A | 2013

Spectroscopy of Lithium Atoms and Molecules on Helium Nanodroplets

Florian Lackner; Johannes Poms; Günter Krois; Johann Valentin Pototschnig; Wolfgang E. Ernst

We report on the spectroscopic investigation of lithium atoms and lithium dimers in their triplet manifold on the surface of helium nanodroplets (HeN). We present the excitation spectrum of the 3p ← 2s and 3d ← 2s two-photon transitions for single Li atoms on HeN. The atoms are excited from the 2S(Σ) ground state into Δ, Π, and Σ pseudodiatomic molecular substates. Excitation spectra are recorded by resonance enhanced multiphoton ionization time-of-flight (REMPI-TOF) mass spectroscopy, which allows an investigation of the exciplex (Li*–Hem, m = 1–3) formation process in the Li–HeN system. Electronic states are shifted and broadened with respect to free atom states, which is explained within the pseudodiatomic model. The assignment is assisted by theoretical calculations, which are based on the Orsay–Trento density functional where the interaction between the helium droplet and the lithium atom is introduced by a pairwise additive approach. When a droplet is doped with more than one alkali atom, the fragility of the alkali–HeN systems leads preferably to the formation of high-spin molecules on the droplets. We use this property of helium nanodroplets for the preparation of Li dimers in their triplet ground state (13Σu+). The excitation spectrum of the 23Πg(ν′ = 0–11) ← 13Σu+(ν″ = 0) transition is presented. The interaction between the molecule and the droplet manifests in a broadening of the transitions with a characteristic asymmetric form. The broadening extends to the blue side of each vibronic level, which is caused by the simultaneous excitation of the molecule and vibrations of the droplet (phonons). The two isotopes of Li form 6Li2 and 7Li2 as well as isotope mixed 6Li7Li molecules on the droplet surface. By using REMPI-TOF mass spectroscopy, isotope-dependent effects could be studied.


Journal of Chemical Physics | 2017

Lithium atoms on helium nanodroplets: Rydberg series and ionization dynamics

Florian Lackner; Günter Krois; Wolfgang E. Ernst

The electronic excitation spectrum of lithium atoms residing on the surface of helium nanodroplets is presented and analyzed employing a Rydberg-Ritz approach. Utilizing resonant two-photon ionization spectroscopy, two different Rydberg series have been identified: one assigned to the nS(Σ) series and the other with predominantly nP(Π) character. For high Rydberg states, which have been resolved up to n = 13, the surrounding helium effectively screens the valence electron from the Li ion core, as indicated by the apparent red-shift of Li transitions and lowered quantum defects on the droplet with respect to their free atom counterparts. For low n states, the screening effect is weakened and the prevailing repulsive interaction gives rise to strongly broadened and blue-shifted transitions. The red-shifts originate from the polarization of nearby He atoms by the positive Li ion core. As a consequence of this effect, the ionization threshold is lowered by 116 ± 10 cm-1 for Li on helium droplets with a radius of about 40 Å. Upon single-photon ionization, heavy complexes corresponding to Li ions attached to intact helium droplets are detected. We conclude that ionization close to the on-droplet ionization threshold triggers a dynamic process in which the Li ion core undergoes a transition from a surface site into the droplet.


Physical Chemistry Chemical Physics | 2011

Spectroscopy of nS, nP, and nD Rydberg series of Cs atoms on helium nanodroplets

Florian Lackner; Günter Krois; Moritz Theisen; Markus Koch; Wolfgang E. Ernst


Journal of Physical Chemistry Letters | 2011

Ionization Thresholds of Alkali Metal Atoms on Helium Droplets

Moritz Theisen; Florian Lackner; Günter Krois; Wolfgang E. Ernst


Physical Review Letters | 2014

Helium-droplet-assisted preparation of cold RbSr molecules.

Florian Lackner; Günter Krois; Thomas Buchsteiner; Johann Valentin Pototschnig; Wolfgang E. Ernst


Physical Chemistry Chemical Physics | 2014

Characterization of RbSr molecules: spectral analysis on helium droplets

Günter Krois; Florian Lackner; Johann Valentin Pototschnig; Thomas Buchsteiner; Wolfgang E. Ernst


Journal of Molecular Spectroscopy | 2015

Investigation of the RbCa molecule: Experiment and theory.

Johann Valentin Pototschnig; Günter Krois; Florian Lackner; Wolfgang E. Ernst

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Florian Lackner

Graz University of Technology

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Wolfgang E. Ernst

Graz University of Technology

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Markus Koch

Graz University of Technology

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Moritz Theisen

Graz University of Technology

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Thomas Buchsteiner

Graz University of Technology

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Andreas W. Hauser

Graz University of Technology

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Johannes Poms

Graz University of Technology

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