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  1. Most notably, correlated disorder can, in principle, be induced in any solid. Consequently, the inhomogeneous seeding strategy we report, might be applicable to a broad range of solids, including those used in energy and data strange applications, for which there is no available optical coherent control route that enables rapid phase changes ...
  2. semanticscholar.org

    Sep 23, 2023The connection between optical properties and structure can be broken using a combination of single-shot femtosecond electron diffraction and optical spectroscopy to follow the lattice dynamics and dielectric function in the phase-change material Ge2Sb2Te5 during an irreversible state transformation.
  3. researchgate.net

    Apr 11, 2024Download Citation | All-optical seeding of a light-induced phase transition with correlated disorder | Ultrafast manipulation of vibrational coherence provides a route to control the structure of ...
  4. ui.adsabs.harvard.edu

    Ultrafast manipulation of vibrational coherence provides a route to control the structure of solids. However, this strategy can only induce long-range correlations and cannot modify atomic structure locally, which is a requirement for many technological applications such as non-volatile electronics. Here we demonstrate that ultrafast lasers can generate incoherent structural fluctuations that ...
  5. All-optical seeding of a light-induced phase transition with correlated disorder Ultrafast manipulation of vibrational coherence provides a route to control the structure of solids. However, this strategy can only induce long-range correlations and cannot modify atomic structure locally, which is a requirement for many technological applications such as non-volatile electronics. Here we ...
  6. ui.adsabs.harvard.edu

    Ultrafast manipulation of vibrational coherence is an emergent route to control the structure of solids. However, this strategy can only induce long-range correlations and cannot modify atomic structure locally, which is required in many technologically-relevant phase transitions. Here, we demonstrate that ultrafast lasers can generate incoherent structural fluctuations which are more ...
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