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Abstract
On-chip manipulation of photon emission from quantum emitters (QEs) is crucial for quantum nanophotonics and advanced optical applications. At the same time, the general design strategy is still elusive, especially for fully exploring the degrees of freedom of multiple channels. Here, the vectorial scattering holography (VSH) approach developed recently for flexibly designing QE-coupled metasurfaces is extended to tempering the strength of QE emission into a particular channel. The VSH power is demonstrated by designing, fabricating, and optically characterizing on-chip QE sources emitted into six differently oriented propagation channels, each representing the entangled state of orthogonal circular polarizations with different topological charges and characterized with a specific relative strength. We postulate that the demonstration of tempered multichannel photon emission from QE-coupled metasurfaces significantly broadens the possibilities provided by the holographic metasurface platform, especially those relevant for high-dimensional quantum information processing.
| Original language | English |
|---|---|
| Journal | ACS Photonics |
| Volume | 11 |
| Issue number | 4 |
| Pages (from-to) | 1584-1591 |
| ISSN | 2330-4022 |
| DOIs | |
| Publication status | Published - 17. Apr 2024 |
Keywords
- holography
- metasurfaces
- multichannel
- nanodiamond
- quantum emitter
- surface plasmon polariton
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- 1 Finished
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Room-Temperature Generation of Indistinguishable Single Photons
Kumar, S. (PI)
02/09/2020 → 31/08/2023
Project: Private Foundations