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Integration of etched facet, electrically pumped, C-band Fabry-Perot lasers on a silicon photonic integrated circuit by transfer printing

(2018) OPTICS EXPRESS. 26(17). p.21443-21454
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Center for nano- and biophotonics (NB-Photonics)
Abstract
We report on the heterogeneous integration of electrically pumped InP Fabry-Perot lasers on a SOI photonic integrated circuit by transfer printing. Transfer printing is a promising micromanipulation technique that allows the heterogeneous integration of optical and electronic components realized on their native substrate onto a target substrate with efficient use of the source material, in a way that can be scaled to parallel manipulation and that allows mixing components from different sources onto the same target. We pre-process transfer printable etched facet Fabry-Perot lasers on their native InP substrate, transfer print them into a trench defined in an SOI photonic chip and post-process the printed lasers on the target substrate. The laser facet is successfully butt-coupled to the photonic circuit using a silicon inverse taper based spot size converter. Milliwatt optical output power coupled to the Si waveguide circuit at 100 mA is demonstrated. (C) 2018 Optical Society of America under the terms of the OSA Open Access Publishing Agreement

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Citation

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

Chicago
Juvert, Joan, Tommaso Cassese, Sarah Uvin, Andreas De Groote, Brad Snyder, Lieve Bogaerts, Geraldine Jamieson, Joris Van Campenhout, Günther Roelkens, and Dries Van Thourhout. 2018. “Integration of Etched Facet, Electrically Pumped, C-band Fabry-Perot Lasers on a Silicon Photonic Integrated Circuit by Transfer Printing.” Optics Express 26 (17): 21443–21454.
APA
Juvert, J., Cassese, T., Uvin, S., De Groote, A., Snyder, B., Bogaerts, L., Jamieson, G., et al. (2018). Integration of etched facet, electrically pumped, C-band Fabry-Perot lasers on a silicon photonic integrated circuit by transfer printing. OPTICS EXPRESS, 26(17), 21443–21454.
Vancouver
1.
Juvert J, Cassese T, Uvin S, De Groote A, Snyder B, Bogaerts L, et al. Integration of etched facet, electrically pumped, C-band Fabry-Perot lasers on a silicon photonic integrated circuit by transfer printing. OPTICS EXPRESS. Washington: Optical Soc Amer; 2018;26(17):21443–54.
MLA
Juvert, Joan et al. “Integration of Etched Facet, Electrically Pumped, C-band Fabry-Perot Lasers on a Silicon Photonic Integrated Circuit by Transfer Printing.” OPTICS EXPRESS 26.17 (2018): 21443–21454. Print.
@article{8582002,
  abstract     = {We report on the heterogeneous integration of electrically pumped InP Fabry-Perot lasers on a SOI photonic integrated circuit by transfer printing. Transfer printing is a promising micromanipulation technique that allows the heterogeneous integration of optical and electronic components realized on their native substrate onto a target substrate with efficient use of the source material, in a way that can be scaled to parallel manipulation and that allows mixing components from different sources onto the same target. We pre-process transfer printable etched facet Fabry-Perot lasers on their native InP substrate, transfer print them into a trench defined in an SOI photonic chip and post-process the printed lasers on the target substrate. The laser facet is successfully butt-coupled to the photonic circuit using a silicon inverse taper based spot size converter. Milliwatt optical output power coupled to the Si waveguide circuit at 100 mA is demonstrated. (C) 2018 Optical Society of America under the terms of the OSA Open Access Publishing Agreement},
  author       = {Juvert, Joan and Cassese, Tommaso and Uvin, Sarah and De Groote, Andreas and Snyder, Brad and Bogaerts, Lieve and Jamieson, Geraldine and Van Campenhout, Joris and Roelkens, G{\"u}nther and Van Thourhout, Dries},
  issn         = {1094-4087},
  journal      = {OPTICS EXPRESS},
  language     = {eng},
  number       = {17},
  pages        = {21443--21454},
  publisher    = {Optical Soc Amer},
  title        = {Integration of etched facet, electrically pumped, C-band Fabry-Perot lasers on a silicon photonic integrated circuit by transfer printing},
  url          = {http://dx.doi.org/10.1364/OE.26.021454},
  volume       = {26},
  year         = {2018},
}

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