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Optical devices and subsystems for few- and multi-mode fiber based networks

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Optical devices and subsystems for few- and multi-mode fiber
based networks
Citation for published version (APA):
Chen, H. (2014).
Optical devices and subsystems for few- and multi-mode fiber based networks
. [Phd Thesis 1
(Research TU/e / Graduation TU/e), Electrical Engineering]. Technische Universiteit Eindhoven.
https://doi.org/10.6100/IR773124
DOI:
10.6100/IR773124
Document status and date:
Published: 01/01/2014
Document Version:
Publisher’s PDF, also known as Version of Record (includes final page, issue and volume numbers)
Please check the document version of this publication:
• A submitted manuscript is the version of the article upon submission and before peer-review. There can be
important differences between the submitted version and the official published version of record. People
interested in the research are advised to contact the author for the final version of the publication, or visit the
DOI to the publisher's website.
• The final author version and the galley proof are versions of the publication after peer review.
• The final published version features the final layout of the paper including the volume, issue and page
numbers.
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Download date: 26. Aug. 2022

Optical Devices and Subsystems for
Few- and Multi-mode Fiber based Networks
PROEFSCHRIFT
ter verkrijging van de graad van doctor aan de
Technische Universiteit Eindhoven, op gezag van de
rector magnificus, prof.dr.ir. C.J. van Duijn, voor een
commissie aangewezen door het College voor
Promoties in het openbaar te verdedigen
op donderdag 8 mei 2014 om 16.00 uur
door
Haoshuo Chen
geboren te Shanghai, China

Dit proefschrift is goedgekeurd door de promotiecommissie:
voorzitter: prof.dr.ir. A.C.P.M. Backx
promotor: prof.ir. A.M.J. Koonen
copromotor: dr. C.M. Okonkwo
leden: prof.dr. A.D. Ellis (Aston University)
prof.dr. P. Bayvel (University College London)
dr. R. Ryf (Bell Laboratories)
dr. J.J.G.M. van der Tol
prof.dr. K.A. Williams

A catalogue record is available from the Eindhoven University of
Technology Library
Optical Devices and Subsystems for Few- and Multi-mode Fiber based
Networks
Author: Haoshuo Chen
Eindhoven University of Technology, 2014
ISBN: 978-90-386-3618-4
NUR 959
Keywords: Optical fiber communication / Mode division multiplexing
/ Wavelength division multiplexing / Photonic integrated circuits /
Optical switch
The work described in this thesis was performed in the Faculty of
Electrical Engineering of the Eindhoven University of Technology and
was financially supported by the European Commission (EC) funded
7
th
framework project MODE-GAP.
Copyright © 2014 by Haoshuo Chen
All rights reserved. No part of this publication may be reproduced,
stored in a retrieval system, or transmitted in any form or any means
without the prior written consent of the author.


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References
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30Gbit/s 3 × 3 optical Mode Group Division Multiplexing system with Mode-Selective Spatial Filtering

TL;DR: In this article, a 30Gbit/s 3 × 3 optical mode group division multiplexing system with mode-selective spatial filtering (MSSF) using singlemode fiber is demonstrated over 20m graded-index multimode fiber.
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Generation and transmission of 512-Gb/s quad-carrier digital super-Nyquist spectral shaped signal.

TL;DR: A novel digital super-Nyquist signal generation scheme is proposed to further suppress the Nyquist signal bandwidth and reduce the channel crosstalk without using optical pre-filtering and the spectrum is much more compact compared with regular Nyquist QPSK signal.
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30-Gb/s Bidirectional Transparent Optical Transmission With an MMF Access and an Indoor Optical Wireless Link

TL;DR: In this article, a 30-Gb/s bidirectional transparent optical transmission over a 4.4-km multimode fiber (MMF) in combination with an indoor optical wireless (OW) link is described.
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Demonstration of a Photonic Integrated Mode Coupler With MDM and WDM Transmission

TL;DR: In this paper, a photonic integrated mode coupler based on silicon-on-insulator (SoI) technology is proposed for coupling between an SoI chip and an FMF, guiding LP01 and LP11 modes.