Atomic-scale diffractive imaging of sub-cycle electron dynamics in condensed matter

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2015
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Yakovlev, Vladislav S.
Stockman, Mark I.
Krausz, Ferenc
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European Union (EU): 647771
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Direct Visualization of Light-Driven Atomic-Scale Carrier Dynamics in Space and Time DIVI
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Scientific reports. 2015, 5, 14581. eISSN 2045-2322. Available under: doi: 10.1038/srep14581
Zusammenfassung

For interaction of light with condensed-matter systems, we show with simulations that ultrafast electron and X-ray diffraction can provide a time-dependent record of charge-density maps with sub-cycle and atomic-scale resolutions. Using graphene as an example material, we predict that diffraction can reveal localised atomic-scale origins of optical and electronic phenomena. In particular, we point out nontrivial relations between microscopic electric current and density in undoped graphene.

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ISO 690YAKOVLEV, Vladislav S., Mark I. STOCKMAN, Ferenc KRAUSZ, Peter BAUM, 2015. Atomic-scale diffractive imaging of sub-cycle electron dynamics in condensed matter. In: Scientific reports. 2015, 5, 14581. eISSN 2045-2322. Available under: doi: 10.1038/srep14581
BibTex
@article{Yakovlev2015-09-28Atomi-43268,
  year={2015},
  doi={10.1038/srep14581},
  title={Atomic-scale diffractive imaging of sub-cycle electron dynamics in condensed matter},
  volume={5},
  journal={Scientific reports},
  author={Yakovlev, Vladislav S. and Stockman, Mark I. and Krausz, Ferenc and Baum, Peter},
  note={Article Number: 14581}
}
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