Skip to main navigation Skip to search Skip to main content

Resonance Fluorescence of GaAs Quantum Dots with Near-Unity Photon Indistinguishability

  • Eva Schöll
  • , Lukas Hanschke
  • , Lucas Schweickert
  • , Katharina D. Zeuner
  • , Marcus Reindl
  • , Saimon Filipe Covre Da Silva
  • , Thomas Lettner
  • , Rinaldo Trotta
  • , Jonathan J. Finley
  • , Kai Müller
  • , Armando Rastelli
  • , Val Zwiller
  • , Klaus D. Jöns
  • AlbaNova University Center
  • Walter Schottky Institut
  • Johannes Kepler University Linz
  • Universita La Sapienza

Research output: Contribution to journalArticlepeer-review

92 Scopus citations

Abstract

Photonic quantum technologies call for scalable quantum light sources that can be integrated, while providing the end user with single and entangled photons on demand. One promising candidate is strain free GaAs/AlGaAs quantum dots obtained by aluminum droplet etching. Such quantum dots exhibit ultra low multi-photon probability and an unprecedented degree of photon pair entanglement. However, different to commonly studied InGaAs/GaAs quantum dots obtained by the Stranski-Krastanow mode, photons with a near-unity indistinguishability from these quantum emitters have proven to be elusive so far. Here, we show on-demand generation of near-unity indistinguishable photons from these quantum emitters by exploring pulsed resonance fluorescence. Given the short intrinsic lifetime of excitons and trions confined in the GaAs quantum dots, we show single photon indistinguishability with a raw visibility of Vraw=(95.0-6.1+5.0)%, without the need for Purcell enhancement. Our results represent a milestone in the advance of GaAs quantum dots by demonstrating the final missing property standing in the way of using these emitters as a key component in quantum communication applications, e.g., as quantum light sources for quantum repeater architectures.

Original languageEnglish
Pages (from-to)2404-2410
Number of pages7
JournalNano Letters
Volume19
Issue number4
DOIs
StatePublished - 10 Apr 2019

Keywords

  • Al droplet etching
  • Semiconductor quantum dot
  • indistinguishable photons
  • resonance fluorescence

Fingerprint

Dive into the research topics of 'Resonance Fluorescence of GaAs Quantum Dots with Near-Unity Photon Indistinguishability'. Together they form a unique fingerprint.

Cite this