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Ahead of Print article · Journal article

Optical Phase Conjugation in a Silicon Waveguide with Lateral p-i-n Diode for Nonlinearity Compensation

From

Department of Photonics Engineering, Technical University of Denmark1

Ultra-fast Optical Communication, Department of Photonics Engineering, Technical University of Denmark2

Centre of Excellence for Silicon Photonics for Optical Communications, Centers, Technical University of Denmark3

Innovations for High Performance Microelectronics GmbH4

Technical University of Berlin5

In-line optical phase conjugation is a well-known technique to enhance the received signal quality through nonlinearity compensation. Being able to implement the conjugation in cm-scale highly nonlinear devices, which can be integrated on a silicon chip could potentially lead to several benefits in terms of small footprint and co-integration with linear signal processing functionalities, as well as lower power consumption.

Here, we focus on silicon waveguides to implement the optical phase conjugation through four-wave mixing. The challenges in terms of conversion efficiency imposed by the presence of nonlinear loss are tackled by using a lateral p-i-n diode along the waveguide. When the diode is reverse biased, the conversion efficiency can be effectively enhanced by the decrease in free-carrier absorption.

Low-penalty conversion can therefore be achieved for WDM signals and the high quality of the generated idlers is critical in demonstrating a 1-dB Q-factor improvement through optical phase conjugation in a 5 WDM channel 16-QAM transmission system after 644-km of dispersion compensated transmission. The performance improvement enables a performance better than the HD-FEC threshold for all the transmitted channels.

Language: English
Publisher: IEEE
Year: 2018
Pages: 323-329
ISSN: 15582213 and 07338724
Types: Ahead of Print article and Journal article
DOI: 10.1109/JLT.2018.2873684
ORCIDs: Da Ros, Francesco , Porto da Silva, Edson , 0000-0002-3861-0512 , 0000-0003-0721-977X , Oxenløwe, Leif Katsuo and Galili, Michael

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