
Absorption spectroscopy of glucose based on a silicon photonics evanescent sensor
- Author
- Eva Ryckeboer (UGent) , Ronny Bockstaele and Roel Baets (UGent)
- Organization
- Project
- Abstract
- We present a silicon photonics evanescent sensor for glucose absorption spectroscopy. The important design aspects of this miniature sensor are discussed as well as the experimental challenges. We demonstrate detection of glucose down to 14 mmol/L, close to the physiological range of blood glucose in humans.
- Keywords
- Biosensors, Silicon photonics, Spectroscopy
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Citation
Please use this url to cite or link to this publication: http://hdl.handle.net/1854/LU-4317986
- MLA
- Ryckeboer, Eva, et al. “Absorption Spectroscopy of Glucose Based on a Silicon Photonics Evanescent Sensor.” IEEE Photonics Conference, 2013, pp. 163–64.
- APA
- Ryckeboer, E., Bockstaele, R., & Baets, R. (2013). Absorption spectroscopy of glucose based on a silicon photonics evanescent sensor. IEEE Photonics Conference, 163–164.
- Chicago author-date
- Ryckeboer, Eva, Ronny Bockstaele, and Roel Baets. 2013. “Absorption Spectroscopy of Glucose Based on a Silicon Photonics Evanescent Sensor.” In IEEE Photonics Conference, 163–64.
- Chicago author-date (all authors)
- Ryckeboer, Eva, Ronny Bockstaele, and Roel Baets. 2013. “Absorption Spectroscopy of Glucose Based on a Silicon Photonics Evanescent Sensor.” In IEEE Photonics Conference, 163–164.
- Vancouver
- 1.Ryckeboer E, Bockstaele R, Baets R. Absorption spectroscopy of glucose based on a silicon photonics evanescent sensor. In: IEEE Photonics Conference. 2013. p. 163–4.
- IEEE
- [1]E. Ryckeboer, R. Bockstaele, and R. Baets, “Absorption spectroscopy of glucose based on a silicon photonics evanescent sensor,” in IEEE Photonics Conference, Washington, USA, 2013, pp. 163–164.
@inproceedings{4317986, abstract = {{We present a silicon photonics evanescent sensor for glucose absorption spectroscopy. The important design aspects of this miniature sensor are discussed as well as the experimental challenges. We demonstrate detection of glucose down to 14 mmol/L, close to the physiological range of blood glucose in humans.}}, author = {{Ryckeboer, Eva and Bockstaele, Ronny and Baets, Roel}}, booktitle = {{IEEE Photonics Conference}}, isbn = {{9781457715075}}, issn = {{2374-0140}}, keywords = {{Biosensors,Silicon photonics,Spectroscopy}}, language = {{eng}}, location = {{Washington, USA}}, pages = {{163--164}}, title = {{Absorption spectroscopy of glucose based on a silicon photonics evanescent sensor}}, year = {{2013}}, }