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Silicon CMOS photonics platform for enabling high-speed DQPSK transceivers

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Center for nano- and biophotonics (NB-Photonics)
Abstract
In this work we review the results obtained under the framework of FP7-HELIOS project for integrated DQPSK transceivers in silicon photonics. A differential DQPSK receiver with balanced zero biased Germanium photodiodes has been demonstrated at 10Gbit/s with an error floor around 10(-15). Furthermore, DPSK modulation up to 10Gbit/s with a bit error rate below 10(-9) is also demonstrated using a silicon push-pull operated dual-drive Mach-Zehnder modulator (MZM) based on carrier depletion. The results indicate the potential of the silicon CMOS photonics platform for boosting next-generation optical networks based on advanced modulation formats.
Keywords
DPSK, RECEIVER, DQPSK, modulation, optical transceivers, silicon photonics, photonic integrated circuits

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Citation

Please use this url to cite or link to this publication:

Chicago
Sanchis, P, M Aamer, A Brimont, AM Gutierrez, N Sotiropoulos, H de Waardt, DJ Thomson, et al. 2013. “Silicon CMOS Photonics Platform for Enabling High-speed DQPSK Transceivers.” In International Conference on Transparent Optical Networks-ICTON. New York, NY, USA: IEEE.
APA
Sanchis, P., Aamer, M., Brimont, A., Gutierrez, A., Sotiropoulos, N., de Waardt, H., Thomson, D., et al. (2013). Silicon CMOS photonics platform for enabling high-speed DQPSK transceivers. International Conference on Transparent Optical Networks-ICTON. Presented at the 15th International conference on Transparent Optical Networks (ICTON 2013), New York, NY, USA: IEEE.
Vancouver
1.
Sanchis P, Aamer M, Brimont A, Gutierrez A, Sotiropoulos N, de Waardt H, et al. Silicon CMOS photonics platform for enabling high-speed DQPSK transceivers. International Conference on Transparent Optical Networks-ICTON. New York, NY, USA: IEEE; 2013.
MLA
Sanchis, P, M Aamer, A Brimont, et al. “Silicon CMOS Photonics Platform for Enabling High-speed DQPSK Transceivers.” International Conference on Transparent Optical Networks-ICTON. New York, NY, USA: IEEE, 2013. Print.
@inproceedings{4246100,
  abstract     = {In this work we review the results obtained under the framework of FP7-HELIOS project for integrated DQPSK transceivers in silicon photonics. A differential DQPSK receiver with balanced zero biased Germanium photodiodes has been demonstrated at 10Gbit/s with an error floor around 10(-15). Furthermore, DPSK modulation up to 10Gbit/s with a bit error rate below 10(-9) is also demonstrated using a silicon push-pull operated dual-drive Mach-Zehnder modulator (MZM) based on carrier depletion. The results indicate the potential of the silicon CMOS photonics platform for boosting next-generation optical networks based on advanced modulation formats.},
  author       = {Sanchis, P and Aamer, M and Brimont, A and Gutierrez, AM and Sotiropoulos, N and de Waardt, H and Thomson, DJ and Gardes, FY and Reed, GT and Ribaud, K and Grosse, P and Hartmann, JM and Fedeli, JM and Marris-Morini, D and Cassan, E and Vivien, L and Vermeulen, Diedrik and Roelkens, G{\"u}nther and H{\aa}kansson, Jesper},
  booktitle    = {International Conference on Transparent Optical Networks-ICTON},
  isbn         = {9781479906833},
  issn         = {2162-7339},
  language     = {eng},
  location     = {Cartagena, Spain},
  pages        = {4},
  publisher    = {IEEE},
  title        = {Silicon CMOS photonics platform for enabling high-speed DQPSK transceivers},
  year         = {2013},
}

Web of Science
Times cited: