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Focusing Surface Acoustic Waves with a Plasmonic Hypersonic Lens

  • Hilario D. Boggiano
  • , Lin Nan
  • , Gustavo Grinblat
  • , Stefan A. Maier
  • , Emiliano Cortés
  • , Andrea V. Bragas

Research output: Contribution to journalArticleResearchpeer-review

Abstract

Plasmonic nanoantennas have proven to be efficient transducers of electromagnetic to mechanical energy and vice versa. The sudden thermal expansion of these structures after an ultrafast optical pulsed excitation leads to the emission of hypersonic acoustic waves to the supporting substrate, which can be detected by another antenna that acts as a high-sensitivity mechanical probe due to the strong modulation of its optical response. Here, we propose and experimentally demonstrate a nanoscale acoustic lens comprised of 11 gold nanodisks whose collective oscillation at gigahertz frequencies gives rise to an interference pattern that results in a diffraction-limited surface acoustic beam of about 340 nm width, with an amplitude contrast of 60%. Via spatially decoupled pump-probe experiments, we were able to map the radiated acoustic energy in the proximity of the focal area, obtaining a very good agreement with the continuum elastic theory.

Original languageEnglish
JournalNano Letters
Volume24
Issue number21
DOIs
Publication statusPublished - 16 May 2024

Keywords

  • acoustic lens
  • coherent acoustic phonons
  • plasmonic nanoantennas
  • surface acoustic wave

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