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Single-band to multi-band perfect absorption in monolayer-graphene-based dielectric metasurfaces. Cavity-assisted boosting of self-hybridization between excitons and photonic bound states in the continuum in multilayers of transition metal dichalc...

Here are the research topics that each of the authors might be investigating based on the article titles:

  1. Single-band to multi-band perfect absorption in monolayer-graphene-based dielectric metasurfaces.
  2. Cavity-assisted boosting of self-hybridization between excitons and photonic bound states in the continuum in multilayers of transition metal dichalcogenides.
  3. Manipulating light-matter interaction into strong coupling regime for photon entanglement in plasmonic lattices.
  4. Magnetic plasmons in plasmonic nanostructures: An overview.
  5. Coupling-Induced Tunable Broadband Superradiance in 2D Metal-Dielectric-Metal Nanocavity Arrays.
  6. Tunable interactions of quasibound states in the continuum with cavity mode in a metasurface-microcavity hybrid.
  7. Strong light-matter interactions in hybrid nanostructures with transition metal dichalcogenides.
  8. Evaluating the Optical Response of Heavily Decorated Black Silicon Based on a Realistic 3D Modeling Methodology.
  9. Tuning magnetic Mie-exciton interaction from the intermediate to strong coupling regime in a WSe2 monolayer coupled with dielectric-metal nanoresonators.
  10. Strong coupling between excitons in a two-dimensional atomic crystal and quasibound states in the continuum in a two-dimensional all-dielectric asymmetric metasurface.

I hope this helps! Let me know if you have any further questions or if there’s anything else I can assist you with.

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