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  • Hantschmann, Markus (4)
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  • Minitti, Michael P. (3)
  • Moeller, Stefan P. (3)
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  • Dakovski, Georgi L. (2)
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  • RIXS (resonant inelastic X-ray scattering) (1)
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  • Institut für Physik und Astronomie (3)
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Principles of femtosecond X-ray/optical cross-correlation with X-ray induced transient optical reflectivity in solids (2015)
Eckert, Sebastian ; Beye, Martin ; Pietzsch, Annette ; Quevedo, Wilson ; Hantschmann, Markus ; Ochmann, Miguel ; Ross, Matthew ; Minitti, Michael P. ; Turner, Joshua J. ; Moeller, Stefan P. ; Schlotter, William F. ; Dakovski, Georgi L. ; Khalil, Munira ; Huse, Nils ; Föhlisch, Alexander
The discovery of ultrafast X-ray induced optical reflectivity changes enabled the development of X-ray/optical cross correlation techniques at X-ray free electron lasers worldwide. We have now linked through experiment and theory the fundamental excitation and relaxation steps with the transient optical properties in finite solid samples. Therefore, we gain a thorough interpretation and an optimized detection scheme of X-ray induced changes to the refractive index and the X-ray/optical cross correlation response. (C) 2015 AIP Publishing LLC.
Fingerprints of electronic, spin and structural dynamics from resonant inelastic soft X-ray scattering in transient photo-chemical species (2018)
Norell, Jesper ; Jay, Raphael M. ; Hantschmann, Markus ; Eckert, Sebastian ; Guo, Meiyuan ; Gaffney, Kelly J. ; Wernet, Philippe ; Lundberg, Marcus ; Föhlisch, Alexander ; Odelius, Michael
We describe how inversion symmetry separation of electronic state manifolds in resonant inelastic soft X-ray scattering (RIXS) can be applied to probe excited-state dynamics with compelling selectivity. In a case study of Fe L-3-edge RIXS in the ferricyanide complex Fe(CN)(6)(3-), we demonstrate with multi-configurational restricted active space spectrum simulations how the information content of RIXS spectral fingerprints can be used to unambiguously separate species of different electronic configurations, spin multiplicities, and structures, with possible involvement in the decay dynamics of photo-excited ligand-to-metal charge-transfer. Specifically, we propose that this could be applied to confirm or reject the presence of a hitherto elusive transient Quartet species. Thus, RIXS offers a particular possibility to settle a recent controversy regarding the decay pathway, and we expect the technique to be similarly applicable in other model systems of photo-induced dynamics.
Chemical Bond Activation Observed with an X-ray Laser (2016)
Beye, Martin ; Öberg, Henrik ; Xin, Hongliang ; Dakovski, Georgi L. ; Föhlisch, Alexander ; Gladh, Jorgen ; Hantschmann, Markus ; Hieke, Florian ; Kaya, Sarp ; Kühn, Danilo ; LaRue, Jerry ; Mercurio, Giuseppe ; Minitti, Michael P. ; Mitra, Ankush ; Moeller, Stefan P. ; Ng, May Ling ; Nilsson, Anders ; Nordlund, Dennis ; Norskov, Jens ; Öström, Henrik ; Ogasawara, Hirohito ; Persson, Mats ; Schlotter, William F. ; Sellberg, Jonas A. ; Wolf, Martin ; Abild-Pedersen, Frank ; Pettersson, Lars G. M. ; Wurth, Wilfried
The concept of bonding and antibonding orbitals is fundamental in chemistry. The population of those orbitals and the energetic difference between the two reflect the strength of the bonding interaction. Weakening the bond is expected to reduce this energetic splitting, but the transient character of bond-activation has so far prohibited direct experimental access. Here we apply time-resolved soft X-ray spectroscopy at a free electron laser to directly observe the decreased bonding antibonding splitting following bond-activation using an ultrashort optical laser pulse.
Ultrafast Independent N-H and N-C Bond Deformation Investigated with Resonant Inelastic X-Ray Scattering (2017)
Eckert, Sebastian ; Norell, Jesper ; Miedema, Piter S. ; Beye, Martin ; Fondell, Mattis ; Quevedo, Wilson ; Kennedy, Brian ; Hantschmann, Markus ; Pietzsch, Annette ; Van Kuiken, Benjamin E. ; Ross, Matthew ; Minitti, Michael P. ; Moeller, Stefan P. ; Schlotter, William F. ; Khalil, Munira ; Odelius, Michael ; Foehlisch, Alexander
The femtosecond excited-state dynamics following resonant photoexcitation enable the selective deformation of N-H and N-C chemical bonds in 2-thiopyridone in aqueous solution with optical or X-ray pulses. In combination with multiconfigurational quantum-chemical calculations, the orbital-specific electronic structure and its ultrafast dynamics accessed with resonant inelastic X-ray scattering at the N 1s level using synchrotron radiation and the soft X-ray free-electron laser LCLS provide direct evidence for this controlled photoinduced molecular deformation and its ultrashort time-scale.
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