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Ring resonator based SOI biosensors

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Center for nano- and biophotonics (NB-Photonics)
Abstract
In this paper, two recent advances in silicon ring resonator biosensors are presented. First, we address the problem that due to the high index contrast, small deviations from perfect symmetry lift the degeneracy of the normal resonator mode. This severely deteriorates the quality of the output signal. To address this, we discuss an integrated interferometric approach to give access to the unsplit, high-quality normal modes of the microring resonator. Second, we demonstrate how digital microfluidics can be used for effective fluid delivery to nanophotonic microring resonator sensors fully constructed in SOI.
Keywords
biosensors, Silicon photonics, ring resonators, peak splitting, digital microfluidics

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Citation

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

Chicago
Bienstman, Peter, Sam Werquin, Cristina Lerma Arce, D Witters, R Puers, J Lammertyn, T Claes, Elewout Hallynck, Jan-Willem Hoste, and Daan Martens. 2013. “Ring Resonator Based SOI Biosensors.” In Proceedings of SPIE, ed. J Kubby and GT Reed Vol. 8629. Spie.
APA
Bienstman, Peter, Werquin, S., Lerma Arce, C., Witters, D., Puers, R., Lammertyn, J., Claes, T., et al. (2013). Ring resonator based SOI biosensors. In J Kubby & G. Reed (Eds.), Proceedings of SPIE (Vol. 8629). Presented at the Conference on Silicon Photonics VIII, Spie.
Vancouver
1.
Bienstman P, Werquin S, Lerma Arce C, Witters D, Puers R, Lammertyn J, et al. Ring resonator based SOI biosensors. In: Kubby J, Reed G, editors. Proceedings of SPIE. Spie; 2013.
MLA
Bienstman, Peter, Sam Werquin, Cristina Lerma Arce, et al. “Ring Resonator Based SOI Biosensors.” Proceedings of SPIE. Ed. J Kubby & GT Reed . Vol. 8629. Spie, 2013. Print.
@inproceedings{4245537,
  abstract     = {In this paper, two recent advances in silicon ring resonator biosensors are presented. First, we address the problem that due to the high index contrast, small deviations from perfect symmetry lift the degeneracy of the normal resonator mode. This severely deteriorates the quality of the output signal. To address this, we discuss an integrated interferometric approach to give access to the unsplit, high-quality normal modes of the microring resonator. Second, we demonstrate how digital microfluidics can be used for effective fluid delivery to nanophotonic microring resonator sensors fully constructed in SOI.},
  articleno    = {UNSP 862905},
  author       = {Bienstman, Peter and Werquin, Sam and Lerma Arce, Cristina and Witters, D and Puers, R and Lammertyn, J and Claes, T and Hallynck, Elewout and Hoste, Jan-Willem and Martens, Daan},
  booktitle    = {Proceedings of SPIE},
  editor       = {Kubby, J and Reed , GT},
  isbn         = {9780819493989},
  issn         = {0277-786X},
  language     = {eng},
  location     = {San Francisco, California, USA},
  pages        = {6},
  publisher    = {Spie},
  title        = {Ring resonator based SOI biosensors},
  url          = {http://dx.doi.org/10.1117/12.2001242},
  volume       = {8629},
  year         = {2013},
}

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