English

Site-specific Interrogation of an Ionic Chiral Fragment During Photolysis Using an X-ray Free-Electron Laser

Chemical Physics 2021-08-16 v1

Abstract

Short-wavelength free-electron lasers with their ultrashort pulses at high intensities have originated new approaches for tracking molecular dynamics from the vista of specific sites. X-ray pump X-ray probe schemes even allow to address individual atomic constituents with a 'trigger'-event that preludes the subsequent molecular dynamics while being able to selectively probe the evolving structure with a time-delayed second X-ray pulse. Here, we use a linearly polarized X-ray photon to trigger the photolysis of a prototypical chiral molecule, namely trifluoromethyloxirane (C3_3H3_3F3_3O), at the fluorine K-edge at around 700 eV. The evolving fluorine-containing fragments are then probed by a second, circularly polarized X-ray pulse of higher photon energy in order to investigate the chemically shifted inner-shell electrons of the ionic motherfragment for their stereochemical sensitivity. We experimentally demonstrate and theoretically support how two-color X-ray pump X-ray probe experiments with polarization control enable XFELs as tools for chiral recognition.

Keywords

Cite

@article{arxiv.2012.07100,
  title  = {Site-specific Interrogation of an Ionic Chiral Fragment During Photolysis Using an X-ray Free-Electron Laser},
  author = {Markus Ilchen and Philipp Schmidt and Nikolay M. Novikovskiy and Gregor Hartmann and Patrick Rupprecht and Ryan N. Coffee and Arno Ehresmann and Andreas Galler and Nick Hartmann and Wolfram Helml and Zhirong Huang and Ludger Inhester and Alberto A. Lutman and James P. MacArthur and Timothy Maxwell and Michael Meyer and Valerija Music and Heinz-Dieter Nuhn and Timur Osipov and Dipanwita Ray and Thomas J. A. Wolf and Sadia Bari and Peter Walter and Zheng Li and Stefan Moeller and André Knie and Philipp V. Demekhin},
  journal= {arXiv preprint arXiv:2012.07100},
  year   = {2021}
}

Comments

14 pages, 5 figures