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Showing 1–6 of 6 results
Advanced filters: Author: Filippo Glerean Clear advanced filters
  • Floquet engineering is emerging as a tool to control quantum materials. Here it is applied using non-resonant optical fields to coherently dress Hubbard excitons in Sr2CuO3, driving wavefunction rotations between bright and dark states.

    • Denitsa R. Baykusheva
    • Deven Carmichael
    • Matteo Mitrano
    Research
    Nature Materials
    P: 1-7
  • This work leverages the intrinsic carrier-envelope phase instability of pulsed lasers to measure the photon number distribution of ultrashort probes, providing a new way to study quantum fluctuations in light-driven materials.

    • Filippo Glerean
    • Enrico Maria Rigoni
    • Daniele Fausti
    ResearchOpen Access
    Light: Science & Applications
    Volume: 14, P: 1-8
  • A spectroscopic study shows that vibrational pumping can be used to coherently control optical dd transitions of electronic origin in the transition metal oxide system CuGeO3.

    • Alexandre Marciniak
    • Stefano Marcantoni
    • Daniele Fausti
    Research
    Nature Physics
    Volume: 17, P: 368-373
  • Here, the authors investigate the optical response of bulk black phosphorus to mid-infrared pulses, and find that while above-gap excitation leads to a broadband light-induced transparency, sub-gap pulses drive an anomalous response, peaked at the single-layer exciton resonance.

    • Angela Montanaro
    • Francesca Giusti
    • Daniele Fausti
    ResearchOpen Access
    Nature Communications
    Volume: 13, P: 1-7