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Showing 1–4 of 4 results
Advanced filters: Author: Baisong Geng Clear advanced filters
  • Inelastic light scattering spectroscopy is a powerful tool in materials science to probe elementary excitations. In a quantum-mechanical picture, these excitations are generated by the incident photons via intermediate electronic transitions. It is now shown that it is possible to manipulate these intermediate 'quantum pathways' using electrostatically doped graphene. A surprising effect is revealed where blocking one pathway results in an increased intensity, unveiling a mechanism of destructive quantum interference between different Raman pathways. The study refines understanding of Raman scattering in graphene and indicates the possibility of controlling quantum pathways to produce unusual inelastic light scattering phenomena.

    • Chi-Fan Chen
    • Cheol-Hwan Park
    • Feng Wang
    Research
    Nature
    Volume: 471, P: 617-620
  • A new hybrid phonon–exciton excited state in bilayer graphene can be tuned electrically, with possible application to phonon lasers.

    • Tsung-Ta Tang
    • Yuanbo Zhang
    • Feng Wang
    Research
    Nature Nanotechnology
    Volume: 5, P: 32-36