Heterogeneous integration for on-chip quantum photonic circuits with single quantum dot devices

Effective use of single emitters in quantum photonics requires coherent emission, strong light-matter coupling, low losses and scalable fabrication. Here, Davanco et al. stride toward this goal by hybrid on-chip integration of Si3N4 waveguides and GaAs nanophotonic geometries with InAs quantum dots.

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Autores principales: Marcelo Davanco, Jin Liu, Luca Sapienza, Chen-Zhao Zhang, José Vinícius De Miranda Cardoso, Varun Verma, Richard Mirin, Sae Woo Nam, Liu Liu, Kartik Srinivasan
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/1f02b91dd3b84cfe844676444bfdd680
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spelling oai:doaj.org-article:1f02b91dd3b84cfe844676444bfdd6802021-12-02T14:41:20ZHeterogeneous integration for on-chip quantum photonic circuits with single quantum dot devices10.1038/s41467-017-00987-62041-1723https://doaj.org/article/1f02b91dd3b84cfe844676444bfdd6802017-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-00987-6https://doaj.org/toc/2041-1723Effective use of single emitters in quantum photonics requires coherent emission, strong light-matter coupling, low losses and scalable fabrication. Here, Davanco et al. stride toward this goal by hybrid on-chip integration of Si3N4 waveguides and GaAs nanophotonic geometries with InAs quantum dots.Marcelo DavancoJin LiuLuca SapienzaChen-Zhao ZhangJosé Vinícius De Miranda CardosoVarun VermaRichard MirinSae Woo NamLiu LiuKartik SrinivasanNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-12 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Marcelo Davanco
Jin Liu
Luca Sapienza
Chen-Zhao Zhang
José Vinícius De Miranda Cardoso
Varun Verma
Richard Mirin
Sae Woo Nam
Liu Liu
Kartik Srinivasan
Heterogeneous integration for on-chip quantum photonic circuits with single quantum dot devices
description Effective use of single emitters in quantum photonics requires coherent emission, strong light-matter coupling, low losses and scalable fabrication. Here, Davanco et al. stride toward this goal by hybrid on-chip integration of Si3N4 waveguides and GaAs nanophotonic geometries with InAs quantum dots.
format article
author Marcelo Davanco
Jin Liu
Luca Sapienza
Chen-Zhao Zhang
José Vinícius De Miranda Cardoso
Varun Verma
Richard Mirin
Sae Woo Nam
Liu Liu
Kartik Srinivasan
author_facet Marcelo Davanco
Jin Liu
Luca Sapienza
Chen-Zhao Zhang
José Vinícius De Miranda Cardoso
Varun Verma
Richard Mirin
Sae Woo Nam
Liu Liu
Kartik Srinivasan
author_sort Marcelo Davanco
title Heterogeneous integration for on-chip quantum photonic circuits with single quantum dot devices
title_short Heterogeneous integration for on-chip quantum photonic circuits with single quantum dot devices
title_full Heterogeneous integration for on-chip quantum photonic circuits with single quantum dot devices
title_fullStr Heterogeneous integration for on-chip quantum photonic circuits with single quantum dot devices
title_full_unstemmed Heterogeneous integration for on-chip quantum photonic circuits with single quantum dot devices
title_sort heterogeneous integration for on-chip quantum photonic circuits with single quantum dot devices
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/1f02b91dd3b84cfe844676444bfdd680
work_keys_str_mv AT marcelodavanco heterogeneousintegrationforonchipquantumphotoniccircuitswithsinglequantumdotdevices
AT jinliu heterogeneousintegrationforonchipquantumphotoniccircuitswithsinglequantumdotdevices
AT lucasapienza heterogeneousintegrationforonchipquantumphotoniccircuitswithsinglequantumdotdevices
AT chenzhaozhang heterogeneousintegrationforonchipquantumphotoniccircuitswithsinglequantumdotdevices
AT joseviniciusdemirandacardoso heterogeneousintegrationforonchipquantumphotoniccircuitswithsinglequantumdotdevices
AT varunverma heterogeneousintegrationforonchipquantumphotoniccircuitswithsinglequantumdotdevices
AT richardmirin heterogeneousintegrationforonchipquantumphotoniccircuitswithsinglequantumdotdevices
AT saewoonam heterogeneousintegrationforonchipquantumphotoniccircuitswithsinglequantumdotdevices
AT liuliu heterogeneousintegrationforonchipquantumphotoniccircuitswithsinglequantumdotdevices
AT kartiksrinivasan heterogeneousintegrationforonchipquantumphotoniccircuitswithsinglequantumdotdevices
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