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Waveguide integrated graphene mid-infrared photodetector

Waveguide integrated graphene mid-infrared photodetector
Waveguide integrated graphene mid-infrared photodetector
Group IV platforms can operate at longer wavelengths due to their low material losses. By combining graphene and Si and Ge platforms, photodetection can be achieved by using graphene’s optical properties and coplanar integration methods. Here, we presented a waveguide coupled graphene photodetector operating at a wavelength of 3.8 μm.
0277-786X
1-5
SPIE
Qu, Zhibo
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Nedeljković, Miloš
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Wu, Yangbo
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Soler Penadés, Jordi
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Khokhar, Ali
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Cao, Wei
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Osman, Ahmed
eb387b50-c718-47df-ac90-97b2efd3e335
Qi, Yanli
e4be1a4a-3af6-44e5-9597-8e41bd10a8b7
Aspiotis, Nikolaos
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Morgan, Katrina
2b9605fc-ac61-4ae7-b5f1-b6e3d257701d
Huang, Chung-Che
825f7447-6d02-48f6-b95a-fa33da71f106
Mashanovich, Goran
c806e262-af80-4836-b96f-319425060051
Reed, Graham T.
Knights, Andrew P.
Qu, Zhibo
ff376b43-4352-4bd2-8420-c1c6cfccd45c
Nedeljković, Miloš
b64e21c2-1b95-479d-a35c-3456dff8c796
Wu, Yangbo
000d8846-20f2-4cea-b496-f6f4b73a171f
Soler Penadés, Jordi
f18f3619-0d71-4547-95fd-dd38c37b7adb
Khokhar, Ali
2eedd1cc-8ac5-4f8e-be25-930bd3eae396
Cao, Wei
5202fa2b-a471-45d4-84e9-9104dffdbbfc
Osman, Ahmed
eb387b50-c718-47df-ac90-97b2efd3e335
Qi, Yanli
e4be1a4a-3af6-44e5-9597-8e41bd10a8b7
Aspiotis, Nikolaos
b32d40f9-0496-464e-bfcc-217f57ca9dc3
Morgan, Katrina
2b9605fc-ac61-4ae7-b5f1-b6e3d257701d
Huang, Chung-Che
825f7447-6d02-48f6-b95a-fa33da71f106
Mashanovich, Goran
c806e262-af80-4836-b96f-319425060051
Reed, Graham T.
Knights, Andrew P.

Qu, Zhibo, Nedeljković, Miloš, Wu, Yangbo, Soler Penadés, Jordi, Khokhar, Ali, Cao, Wei, Osman, Ahmed, Qi, Yanli, Aspiotis, Nikolaos, Morgan, Katrina, Huang, Chung-Che and Mashanovich, Goran (2018) Waveguide integrated graphene mid-infrared photodetector. Reed, Graham T. and Knights, Andrew P. (eds.) In Silicon Photonics XIII. vol. 10537, SPIE. pp. 1-5 . (doi:10.1117/12.2290476).

Record type: Conference or Workshop Item (Paper)

Abstract

Group IV platforms can operate at longer wavelengths due to their low material losses. By combining graphene and Si and Ge platforms, photodetection can be achieved by using graphene’s optical properties and coplanar integration methods. Here, we presented a waveguide coupled graphene photodetector operating at a wavelength of 3.8 μm.

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More information

Accepted/In Press date: 4 January 2018
e-pub ahead of print date: 22 February 2018
Published date: 2018
Additional Information: acceptance date added.

Identifiers

Local EPrints ID: 418275
URI: http://eprints.soton.ac.uk/id/eprint/418275
ISSN: 0277-786X
PURE UUID: 484e81a6-39b3-49bc-ba16-af2f71d20574
ORCID for Miloš Nedeljković: ORCID iD orcid.org/0000-0002-9170-7911
ORCID for Jordi Soler Penadés: ORCID iD orcid.org/0000-0002-1706-8533
ORCID for Wei Cao: ORCID iD orcid.org/0000-0003-1431-7060
ORCID for Ahmed Osman: ORCID iD orcid.org/0000-0001-6575-3861
ORCID for Katrina Morgan: ORCID iD orcid.org/0000-0002-8600-4322
ORCID for Chung-Che Huang: ORCID iD orcid.org/0000-0003-3471-2463

Catalogue record

Date deposited: 27 Feb 2018 17:30
Last modified: 16 Apr 2024 01:46

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Contributors

Author: Zhibo Qu
Author: Yangbo Wu
Author: Jordi Soler Penadés ORCID iD
Author: Ali Khokhar
Author: Wei Cao ORCID iD
Author: Ahmed Osman ORCID iD
Author: Yanli Qi
Author: Nikolaos Aspiotis
Author: Katrina Morgan ORCID iD
Author: Chung-Che Huang ORCID iD
Editor: Graham T. Reed
Editor: Andrew P. Knights

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