On-chip grating coupler array on the SOI platform for fan-in/fan-out of multi-core fibers with low insertion loss and crosstalk

Yunhong Ding, Feihong Ye, Christophe Peucheret, Haiyan Ou, Yutaka Miyamoto, Toshio Morioka

Research output: Chapter in Book/Report/Conference proceedingArticle in proceedingsResearchpeer-review

Abstract

We design and fabricate a compact multi-core fiber fan-in/fan-out using a fully-etched grating coupler array on the SOI platform. Lowest coupling loss of 6.8 dB with 3 dB bandwidth of 48 nm and crosstalk lower than ×32 dB are demonstrated.
Original languageEnglish
Title of host publicationProceedings of 2014 European Conference on Optical Communication
Number of pages3
PublisherIEEE
Publication date2014
Pages1-3
ISBN (Print)9782954944401
DOIs
Publication statusPublished - 2014
EventEuropean Conference on Optical Communication (ECOC 2014) - Cannes, France
Duration: 21 Sep 201425 Sep 2014

Conference

ConferenceEuropean Conference on Optical Communication (ECOC 2014)
CountryFrance
CityCannes
Period21/09/201425/09/2014

Keywords

  • Communication, Networking and Broadcast Technologies
  • Components, Circuits, Devices and Systems
  • Fields, Waves and Electromagnetics
  • Photonics and Electrooptics
  • Couplers
  • Couplings
  • Gratings
  • Loss measurement
  • Optical fiber couplers
  • Optical fiber devices
  • Optical fiber networks

Cite this

Ding, Y., Ye, F., Peucheret, C., Ou, H., Miyamoto, Y., & Morioka, T. (2014). On-chip grating coupler array on the SOI platform for fan-in/fan-out of multi-core fibers with low insertion loss and crosstalk. In Proceedings of 2014 European Conference on Optical Communication (pp. 1-3). IEEE. https://doi.org/10.1109/ECOC.2014.6964081
Ding, Yunhong ; Ye, Feihong ; Peucheret, Christophe ; Ou, Haiyan ; Miyamoto, Yutaka ; Morioka, Toshio. / On-chip grating coupler array on the SOI platform for fan-in/fan-out of multi-core fibers with low insertion loss and crosstalk. Proceedings of 2014 European Conference on Optical Communication. IEEE, 2014. pp. 1-3
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title = "On-chip grating coupler array on the SOI platform for fan-in/fan-out of multi-core fibers with low insertion loss and crosstalk",
abstract = "We design and fabricate a compact multi-core fiber fan-in/fan-out using a fully-etched grating coupler array on the SOI platform. Lowest coupling loss of 6.8 dB with 3 dB bandwidth of 48 nm and crosstalk lower than ×32 dB are demonstrated.",
keywords = "Communication, Networking and Broadcast Technologies, Components, Circuits, Devices and Systems, Fields, Waves and Electromagnetics, Photonics and Electrooptics, Couplers, Couplings, Gratings, Loss measurement, Optical fiber couplers, Optical fiber devices, Optical fiber networks",
author = "Yunhong Ding and Feihong Ye and Christophe Peucheret and Haiyan Ou and Yutaka Miyamoto and Toshio Morioka",
year = "2014",
doi = "10.1109/ECOC.2014.6964081",
language = "English",
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booktitle = "Proceedings of 2014 European Conference on Optical Communication",
publisher = "IEEE",
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Ding, Y, Ye, F, Peucheret, C, Ou, H, Miyamoto, Y & Morioka, T 2014, On-chip grating coupler array on the SOI platform for fan-in/fan-out of multi-core fibers with low insertion loss and crosstalk. in Proceedings of 2014 European Conference on Optical Communication. IEEE, pp. 1-3, European Conference on Optical Communication (ECOC 2014), Cannes, France, 21/09/2014. https://doi.org/10.1109/ECOC.2014.6964081

On-chip grating coupler array on the SOI platform for fan-in/fan-out of multi-core fibers with low insertion loss and crosstalk. / Ding, Yunhong; Ye, Feihong; Peucheret, Christophe; Ou, Haiyan; Miyamoto, Yutaka; Morioka, Toshio.

Proceedings of 2014 European Conference on Optical Communication. IEEE, 2014. p. 1-3.

Research output: Chapter in Book/Report/Conference proceedingArticle in proceedingsResearchpeer-review

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KW - Communication, Networking and Broadcast Technologies

KW - Components, Circuits, Devices and Systems

KW - Fields, Waves and Electromagnetics

KW - Photonics and Electrooptics

KW - Couplers

KW - Couplings

KW - Gratings

KW - Loss measurement

KW - Optical fiber couplers

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KW - Optical fiber networks

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