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Silicon grating structures for optical fiber interfacing and III-V/silicon opto-electronic components

Günther Roelkens (UGent) , Diedrik Vermeulen (UGent) , Yanlu Li (UGent) , Muhammad Muneeb (UGent) , Nannicha Hattasan (UGent) , Eva Ryckeboer (UGent) , Yannick De Koninck (UGent) , Dries Van Thourhout (UGent) and Roel Baets (UGent)
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Abstract
In this paper, we review our work on efficient, broadband and polarization independent interfaces between a silicon-on-insulator photonic IC and a single-mode optical fiber based on grating structures. The high alignment tolerance and the fact that the optical fiber interface is out-of-plane provide opportunities for easy packaging and wafer-scale testing of the photonic IC. Next to fiber-chip interfaces we will discuss the use of silicon grating structures in III-V on silicon opto-electronic components such as integrated photodetectors and microlasers.
Keywords
INTEGRATED-CIRCUITS, ON-INSULATOR, WAVE-GUIDES, COUPLERS, COMPACT, CHIP, OVERLAY, high contrast grating, fiber-chip coupling, III-V/silicon opto-electronics

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MLA
Roelkens, Günther, et al. “Silicon Grating Structures for Optical Fiber Interfacing and III-V/Silicon Opto-Electronic Components.” Proceedings of SPIE, vol. 8633, 2013.
APA
Roelkens, G., Vermeulen, D., Li, Y., Muneeb, M., Hattasan, N., Ryckeboer, E., … Baets, R. (2013). Silicon grating structures for optical fiber interfacing and III-V/silicon opto-electronic components. In Proceedings of SPIE (Vol. 8633). San Francisco, California, USA.
Chicago author-date
Roelkens, Günther, Diedrik Vermeulen, Yanlu Li, Muhammad Muneeb, Nannicha Hattasan, Eva Ryckeboer, Yannick De Koninck, Dries Van Thourhout, and Roel Baets. 2013. “Silicon Grating Structures for Optical Fiber Interfacing and III-V/Silicon Opto-Electronic Components.” In Proceedings of SPIE. Vol. 8633.
Chicago author-date (all authors)
Roelkens, Günther, Diedrik Vermeulen, Yanlu Li, Muhammad Muneeb, Nannicha Hattasan, Eva Ryckeboer, Yannick De Koninck, Dries Van Thourhout, and Roel Baets. 2013. “Silicon Grating Structures for Optical Fiber Interfacing and III-V/Silicon Opto-Electronic Components.” In Proceedings of SPIE. Vol. 8633.
Vancouver
1.
Roelkens G, Vermeulen D, Li Y, Muneeb M, Hattasan N, Ryckeboer E, et al. Silicon grating structures for optical fiber interfacing and III-V/silicon opto-electronic components. In: Proceedings of SPIE. 2013.
IEEE
[1]
G. Roelkens et al., “Silicon grating structures for optical fiber interfacing and III-V/silicon opto-electronic components,” in Proceedings of SPIE, San Francisco, California, USA, 2013, vol. 8633.
@inproceedings{4249937,
  abstract     = {In this paper, we review our work on efficient, broadband and polarization independent interfaces between a silicon-on-insulator photonic IC and a single-mode optical fiber based on grating structures. The high alignment tolerance and the fact that the optical fiber interface is out-of-plane provide opportunities for easy packaging and wafer-scale testing of the photonic IC. Next to fiber-chip interfaces we will discuss the use of silicon grating structures in III-V on silicon opto-electronic components such as integrated photodetectors and microlasers.},
  articleno    = {86330S},
  author       = {Roelkens, Günther and Vermeulen, Diedrik and Li, Yanlu and Muneeb, Muhammad and Hattasan, Nannicha and Ryckeboer, Eva and De Koninck, Yannick and Van Thourhout, Dries and Baets, Roel},
  booktitle    = {Proceedings of SPIE},
  isbn         = {9780819494023},
  issn         = {0277-786X},
  keywords     = {INTEGRATED-CIRCUITS,ON-INSULATOR,WAVE-GUIDES,COUPLERS,COMPACT,CHIP,OVERLAY,high contrast grating,fiber-chip coupling,III-V/silicon opto-electronics},
  language     = {eng},
  location     = {San Francisco, California, USA},
  pages        = {6},
  title        = {Silicon grating structures for optical fiber interfacing and III-V/silicon opto-electronic components},
  url          = {http://dx.doi.org/10.1117/12.2001289},
  volume       = {8633},
  year         = {2013},
}

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