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Experimental Investigation of the Thermal Emission Cross Section of Nanoresonators Using Hierarchical Poisson-Disk Distributions

  • Denis Langevin
  • , Clément Verlhac
  • , Julien Jaeck
  • , Loubnan Abou-Hamdan
  • , Eva Taupeau
  • , Baptiste Fix
  • , Nathalie Bardou
  • , Christophe Dupuis
  • , Yannick De Wilde
  • , Riad Haïdar
  • , Patrick Bouchon
  • Université Paris-Saclay
  • Centre de Nanosciences et de Nanotechnologies
  • PSL Research University

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

Effective cross sections of nano-objects are fundamental properties that determine their ability to interact with light. However, measuring them for individual resonators directly and quantitatively remains challenging, particularly because of the very low signals involved. Here, we experimentally measure the thermal emission cross section of metal-insulator-metal nanoresonators using a stealthy hyperuniform distribution based on a hierarchical Poisson-disk algorithm. In such distributions, there are no long-range interactions between antennas, and we show that the light emitted by such metasurfaces behaves as the sum of cross sections of independent nanoantennas, enabling direct retrieval of the single resonator contribution. The emission cross section at resonance is found to be on the order of λ02/3, a value that is nearly 3 times larger than the theoretical maximal absorption cross section of a single particle, but remains smaller than the maximal extinction cross section. This measurement technique can be generalized to any single resonator cross section, and we also apply it to a lossy dielectric layer.

langue originaleAnglais
Numéro d'article043801
journalPhysical Review Letters
Volume132
Numéro de publication4
Les DOIs
étatPublié - 26 janv. 2024
Modification externeOui

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