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Extreme multiexciton emission from deterministically assembled single-emitter subwavelength plasmonic patch antennas

  • Amit Raj Dhawan
  • , Cherif Belacel
  • , Juan Uriel Esparza-Villa
  • , Michel Nasilowski
  • , Zhiming Wang
  • , Catherine Schwob
  • , Jean Paul Hugonin
  • , Laurent Coolen
  • , Benoît Dubertret
  • , Pascale Senellart
  • , Agnès Maître
  • Medical School of UESTC
  • Sorbonne Université
  • Université Paris-Saclay
  • PSL Research University
  • Laboratoire Charles Fabry

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

Coupling nano-emitters to plasmonic antennas is a key milestone for the development of nanoscale quantum light sources. One challenge, however, is the precise nanoscale positioning of the emitter in the structure. Here, we present a laser etching protocol that deterministically positions a single colloidal CdSe/CdS core/shell quantum dot emitter inside a subwavelength plasmonic patch antenna with three-dimensional nanoscale control. By exploiting the properties of metal–insulator–metal structures at the nanoscale, the fabricated single-emitter antenna exhibits a very high-Purcell factor (>72) and a brightness enhancement of a factor of 70. Due to the unprecedented quenching of Auger processes and the strong acceleration of the multiexciton emission, more than 4 photons per pulse can be emitted by a single quantum dot, thus increasing the device yield. Our technology can be applied to a wide range of photonic nanostructures and emitters, paving the way for scalable and reliable fabrication of ultra-compact light sources.

langue originaleAnglais
Numéro d'article33
journalLight: Science and Applications
Volume9
Numéro de publication1
Les DOIs
étatPublié - 1 déc. 2020
Modification externeOui

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