Surface acoustic wave photonic devices in silicon on insulator.


Journal

Nature communications
ISSN: 2041-1723
Titre abrégé: Nat Commun
Pays: England
ID NLM: 101528555

Informations de publication

Date de publication:
16 Sep 2019
Historique:
received: 13 05 2019
accepted: 15 08 2019
entrez: 19 9 2019
pubmed: 19 9 2019
medline: 19 9 2019
Statut: epublish

Résumé

Opto-mechanical interactions in planar photonic integrated circuits draw great interest in basic research and applications. However, opto-mechanics is practically absent in the most technologically significant photonics platform: silicon on insulator. Previous demonstrations required the under-etching and suspension of silicon structures. Here we present surface acoustic wave-photonic devices in silicon on insulator, up to 8 GHz frequency. Surface waves are launched through absorption of modulated pump light in metallic gratings and thermo-elastic expansion. The surface waves are detected through photo-elastic modulation of an optical probe in standard race-track resonators. Devices do not involve piezo-electric actuation, suspension of waveguides or hybrid material integration. Wavelength conversion of incident microwave signals and acoustic true time delays up to 40 ns are demonstrated on-chip. Lastly, discrete-time microwave-photonic filters with up to six taps and 20 MHz-wide passbands are realized using acoustic delays. The concept is suitable for integrated microwave-photonics signal processing.

Identifiants

pubmed: 31527635
doi: 10.1038/s41467-019-12157-x
pii: 10.1038/s41467-019-12157-x
pmc: PMC6746697
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

4214

Subventions

Organisme : EC | EU Framework Programme for Research and Innovation H2020 | H2020 Priority Excellent Science | H2020 European Research Council (H2020 Excellent Science - European Research Council)
ID : H2020-ERC-2015-STG 679228 (L-SID)

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Auteurs

Dvir Munk (D)

Faculty of Engineering, Bar-Ilan University, 5290002, Ramat-Gan, Israel.
Institute for Nano-Technology and Advanced Materials, Bar-Ilan University, 5290002, Ramat-Gan, Israel.

Moshe Katzman (M)

Faculty of Engineering, Bar-Ilan University, 5290002, Ramat-Gan, Israel.
Institute for Nano-Technology and Advanced Materials, Bar-Ilan University, 5290002, Ramat-Gan, Israel.

Mirit Hen (M)

Faculty of Engineering, Bar-Ilan University, 5290002, Ramat-Gan, Israel.
Institute for Nano-Technology and Advanced Materials, Bar-Ilan University, 5290002, Ramat-Gan, Israel.

Maayan Priel (M)

Faculty of Engineering, Bar-Ilan University, 5290002, Ramat-Gan, Israel.
Institute for Nano-Technology and Advanced Materials, Bar-Ilan University, 5290002, Ramat-Gan, Israel.

Moshe Feldberg (M)

Institute for Nano-Technology and Advanced Materials, Bar-Ilan University, 5290002, Ramat-Gan, Israel.

Tali Sharabani (T)

Institute for Nano-Technology and Advanced Materials, Bar-Ilan University, 5290002, Ramat-Gan, Israel.
Department of Chemistry, Bar-Ilan University, 5290002, Ramat-Gan, Israel.

Shahar Levy (S)

Faculty of Engineering, Bar-Ilan University, 5290002, Ramat-Gan, Israel.
Institute for Nano-Technology and Advanced Materials, Bar-Ilan University, 5290002, Ramat-Gan, Israel.

Arik Bergman (A)

Faculty of Engineering, Bar-Ilan University, 5290002, Ramat-Gan, Israel.
Institute for Nano-Technology and Advanced Materials, Bar-Ilan University, 5290002, Ramat-Gan, Israel.

Avi Zadok (A)

Faculty of Engineering, Bar-Ilan University, 5290002, Ramat-Gan, Israel. Avinoam.Zadok@biu.ac.il.
Institute for Nano-Technology and Advanced Materials, Bar-Ilan University, 5290002, Ramat-Gan, Israel. Avinoam.Zadok@biu.ac.il.

Classifications MeSH