4.7 Article

Ultrafast all-optical switching enabled by epsilon-near-zero-tailored absorption in metal-insulator nanocavities

Journal

COMMUNICATIONS PHYSICS
Volume 3, Issue 1, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s42005-020-0379-2

Keywords

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Funding

  1. Luxembourg National Research Fund [C19/MS/13624497]
  2. Deutsche Forschungsgemeinschaft through the Emmy Noether program [BR 5030/1-1]
  3. European Research Council [819871]
  4. FEDER Program [2017-03-022-19]
  5. European Union [777222]
  6. Project TEHRIS
  7. European Research Council (ERC) [819871] Funding Source: European Research Council (ERC)

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Ultrafast control of light-matter interactions is fundamental in view of new technological frontiers of information processing. However, conventional optical elements are either static or feature switching speeds that are extremely low with respect to the time scales at which it is possible to control light. Here, we exploit the artificial epsilon-near-zero (ENZ) modes of a metal-insulator-metal nanocavity to tailor the linear photon absorption of our system and realize a nondegenerate all-optical ultrafast modulation of the reflectance at a specific wavelength. Optical pumping of the system at its high energy ENZ mode leads to a strong redshift of the low energy mode because of the transient increase of the local dielectric function, which leads to a sub-3-ps control of the reflectance at a specific wavelength with a relative modulation depth approaching 120%.

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