New Journal of Physics (Jan 2019)

Ultrafast charge redistribution in small iodine containing molecules

  • M Hollstein,
  • K Mertens,
  • S Klumpp,
  • N Gerken,
  • S Palutke,
  • I Baev,
  • G Brenner,
  • S Dziarzhytski,
  • M Meyer,
  • W Wurth,
  • D Pfannkuche,
  • M Martins

DOI
https://doi.org/10.1088/1367-2630/ab1056
Journal volume & issue
Vol. 21, no. 3
p. 033017

Abstract

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We present studies on intra-molecular charge redistribution in iodine containing molecules upon iodine-4d photoionization. For this, we employed an XUV-pump-XUV-probe scheme based on time-delayed femtosecond pulses delivered by the free-electron laser at DESY in Hamburg (FLASH). The experimental results show delay dependent and molecule-specific iodine charge state distributions that arise upon multiple iodine-4d photoionization. Using the example of CH _3 I and CH _2 I _2 , we compare the delay-dependent yields of I ^3+ . We model the involved processes using advanced ab initio electronic structure calculations which include electron correlations combined with a classical model of the nuclear motion. The qualitative agreement of our model with the experimental results allows us to relate the observed, strongly molecule-specific efficiencies of the intra-molecular charge rearrangement not only to molecule-specific fragmentation timescales but also to molecule-specific electronic structure and molecular environment.

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