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Document type:
Forschungsdaten
Responsible:
Jöns, Klaus D.
Authors:
Schöll, Eva; Hanschke, Lukas; Schweickert, Lucas; Zeuner, Katharina D.; Reindl, Marcus; Covre da Silva, Saimon Filipe; Lettner, Thomas; Trotta, Rinaldo; Finley, Jonathan J.; Müller, Kai; Rastelli, Armando; Zwiller, Val; Jöns, Klaus D.
Author affiliation:
TUM
Publisher:
TUM
Title:
Data plotted in the figures of "Resonance Fluorescence of GaAs Quantum Dots with Near-Unity Photon Indistinguishability"
Identifier:
doi:10.14459/2020mp1545833
End date of data production:
11.03.2019
Subject area:
PHY Physik
Resource type:
Experimente und Beobachtungen / experiments and observations; Simulationen / simulations
Data type:
Tabellen / tables
Description:
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...     »
Method of data assessment:
Quantum optical measurements and quantum optical simulations
Links:

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

Key words:
Semiconductor quantum dot; Resonance fluorescence; Indistinguishable photons; Al droplet etching
Technical remarks:
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Language:
en
Rights:
by, http://creativecommons.org/licenses/by/4.0
Horizon 2020:
820423 (S2QUIP)
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