Intermediate Field Coupling of Single Epitaxial Quantum Dots to Plasmonic Waveguides
Abstract
Key requirements for quantum plasmonic nanocircuits are reliable single-photon sources, high coupling efficiency to the plasmonic structures and low propagation losses. Self-assembled epitaxially grown GaAs quantum dots are close to ideal stable, bright and narrowband single-photon emitters. Likewise, wet-chemically grown monocrystalline silver nanowires are among the best plasmonic waveguides. However, large propagation losses of surface plasmons on the high-index GaAs substrate prevent their direct combination. Here, we show by experiment and simulation that the best overall performance of the quantum plasmonic nanocircuit based on these building blocks is achieved in the intermediate field regime with an additional spacer layer between the quantum dot and the plasmonic waveguide. High-resolution cathodoluminescence measurements allow a precise determination of the coupling distance and support a simple analytical model to explain the overall performance. The coupling efficiency is increased up to four times by standing wave interference near the end of the waveguide.
Keywords
Cite
@article{arxiv.2310.17481,
title = {Intermediate Field Coupling of Single Epitaxial Quantum Dots to Plasmonic Waveguides},
author = {Michael Seidel and Yuhui Yang and Thorsten Schumacher and Yongheng Huo and Saimon Filipe Covre da Silva and Sven Rodt and Armando Rastelli and Stephan Reitzenstein and Markus Lippitz},
journal= {arXiv preprint arXiv:2310.17481},
year = {2023}
}
Comments
Accepted at ACS Nano Letters; contains main text and supporting information