Alexander Kothe
Helmholtz-Zentrum Berlin
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Publication
Featured researches published by Alexander Kothe.
Journal of the American Chemical Society | 2012
Robert Seidel; Samira Ghadimi; Kathrin M. Lange; Sébastien Bonhommeau; Mikhail A. Soldatov; Ronny Golnak; Alexander Kothe; René Könnecke; A. V. Soldatov; Stephan Thürmer; Bernd Winter; Emad F. Aziz
The nonradiative dark channels in the L-edge fluorescence spectra from transition-metal aqueous solution identify the ultrafast charge-transfer processes playing an important role in many biological and chemical systems. Yet, the exact origin of such spectral dips with respect to the X-ray transmission spectrum has remained unclear. In the present study we explore the nature of the underlying decay mechanism of 2p core-excited Co(2+) in water by probing the nonradiative Auger-type electron emission channel using photoelectron spectroscopy from a liquid microjet. Our measurements demonstrate unequivocally that metal-to-water charge transfer quenches fluorescence and will inevitably lead to a dip in the total-fluorescence-yield X-ray absorption spectrum. This is directly revealed from the resonant enhancement of valence signal intensity arising from the interference of two identical final states created by a direct and Auger-electron emission, respectively.
Journal of Physical Chemistry B | 2014
Nicholas Engel; Sergey I. Bokarev; Edlira Suljoti; Raul Garcia‐Diez; Kathrin M. Lange; Kaan Atak; Ronny Golnak; Alexander Kothe; Marcus Dantz; Oliver Kühn; Emad F. Aziz
Resonant inelastic X-ray scattering (RIXS) and X-ray absorption (XA) experiments at the iron L- and nitrogen K-edge are combined with high-level first-principles restricted active space self-consistent field (RASSCF) calculations for a systematic investigation of the nature of the chemical bond in potassium ferrocyanide in aqueous solution. The atom- and site-specific RIXS excitations allow for direct observation of ligand-to-metal (Fe L-edge) and metal-to-ligand (N K-edge) charge-transfer bands and thereby evidence for strong σ-donation and π-backdonation. The effects are identified by comparing experimental and simulated spectra related to both the unoccupied and occupied molecular orbitals in solution.
Optics Express | 2014
Jan Metje; Mario Borgwardt; Alexandre Moguilevski; Alexander Kothe; Nicholas Engel; Martin Wilke; Ruba Al-Obaidi; Daniel Tolksdorf; Alexander Firsov; Maria Brzhezinskaya; Alexei Erko; Igor Yu. Kiyan; Emad F. Aziz
We report on a newly built laser-based tabletop setup which enables generation of femtosecond light pulses in the XUV range employing the process of high-order harmonic generation (HHG) in a gas medium. The spatial, spectral, and temporal characteristics of the XUV beam are presented. Monochromatization of XUV light with minimum temporal pulse distortion is the central issue of this work. Off-center reflection zone plates are shown to be advantageous when selection of a desired harmonic is carried out with the use of a single optical element. A cross correlation technique was applied to characterize the performance of the zone plates in the time domain. By using laser pulses of 25 fs length to pump the HHG process, a pulse duration of 45 fs for monochromatized harmonics was achieved in the present setup.
Review of Scientific Instruments | 2013
Alexander Kothe; Jan Metje; Martin Wilke; Alexandre Moguilevski; Nicholas Engel; Ruba Al-Obaidi; Clemens Richter; Ronny Golnak; Igor Yu. Kiyan; Emad F. Aziz
A newly constructed time-of-flight electron spectrometer of the magnetic bottle type is characterized for electron detection in a broad range of kinetic energies. The instrument is designed to measure the energy spectra of electrons generated from liquids excited by strong laser fields and photons in the range of extreme ultra violet and soft X-rays. Argon inner shell electrons were recorded to calibrate the spectrometer and investigate its characteristics, such as energy resolution and collection efficiency. Its energy resolution ΔE/E of 1.6% allows resolving the Ar 2p spin orbit structure at kinetic energies higher than 100 eV. The collection efficiency is determined and compared to that of the spectrometer in its field-free configuration.
Physical Chemistry Chemical Physics | 2015
Alexander Kothe; Martin Wilke; Alexandre Moguilevski; Nicholas Engel; Bernd Winter; Igor Yu. Kiyan; Emad F. Aziz
The role of experimental conditions in the study of the early-time charge transfer to solvent dynamics in iodide aqueous solution is revised. Under the short (∼50 fs) laser pulse regime of the current experiment, the presence of the pump–probe cross-correlation signal in the transient photoelectron spectra can be ruled out due to the much larger time scale of the electron-transfer dynamics. The ratio of the ionization yields from different initial states of iodide and water is argued to be dependent on the electron kinetic energy, and to be influenced by the presence of a bound resonance state above the vacuum threshold. Re-evaluation of our experimental data reassures the presence of an intermediate state in the charge-transfer process, initiated by electronic excitation into the continuum spectrum.
New Journal of Physics | 2014
Martin Wilke; Ruba Al-Obaidi; Alexandre Moguilevski; Alexander Kothe; Nicholas Engel; Jan Metje; I Yu Kiyan; Emad F. Aziz
We report on strong-field ionization of dense water gas in a short infrared laser pulse. By employing a unique combination of photoelectron spectroscopy with a liquid micro-jet technique, we observe how the character of electron emission at high kinetic energies changes with the increase of the medium density. This change is associated with the process of laser-assisted electron scattering (LAES) on neighboring particles, which becomes a dominant mechanism of hot electron emission at higher medium densities. The manifestation of this mechanism is found to require densities that are orders of magnitude lower than those considered for heating the laser-generated plasmas via the LAES process. The experimental results are supported by simulations of the LAES yield with the use of the Kroll–Watson theory.
Chemical Physics Letters | 2012
Mikhail A. Soldatov; Kathrin M. Lange; Malte D. Gotz; Nicholas Engel; Ronny Golnak; Alexander Kothe; Emad F. Aziz
Journal of Physical Chemistry Letters | 2011
Andrei P. Sommer; Kai F. Hodeck; Dan Zhu; Alexander Kothe; Kathrin M. Lange; Hans-Jörg Fecht; Emad F. Aziz
Physical Chemistry Chemical Physics | 2015
Alexander Kothe; Martin Wilke; Alexandre Moguilevski; Nicholas Engel; Bernd Winter; Igor Yu. Kiyan; Emad F. Aziz
Archive | 2012
Kathrin M. Lange; Alexander Kothe; Emad F. Aziz