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Proceedings Paper

Integrated planar lightwave bio/chem OEIC sensors on Si CMOS circuits
Author(s): Nan Marie Jokerst; Martin A. Brooke; Sang-Yeon Cho; Mikkel Thomas; Jeffrey Lillie; Daeik Kim; Stephen Ralph; Karla Dennis; Benita Comeau; Cliff Henderson
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Paper Abstract

Optical sensing, and the integration of sensors and electronics into Sensor on a Chip and Sensor on a Package systems are an approach to the creation of miniaturized, portable, customizable, low cost sensor systems for rapid health diagnostics, medical research, environmental monitoring, and security monitoring. To integrate optical sensing systems that are autonomous, it is essential to integrate the sensor, light source, and light detection into a single substrate or chip. The integration of this optical system with signal control and processing electronics enable discrimination with individually customized sensors in sensor arrays, and high sensitivity levels. Thin film optoelectronic active device integration with planar optical passive devices is a heterogeneous integration method for fabricating planar lightwave integrated circuits at the chip level and planar lightwave integrated systems at the substrate and package level.

Paper Details

Date Published: 7 March 2005
PDF: 8 pages
Proc. SPIE 5730, Optoelectronic Integration on Silicon II, (7 March 2005); doi: 10.1117/12.592771
Show Author Affiliations
Nan Marie Jokerst, Duke Univ. (United States)
Martin A. Brooke, Duke Univ. (United States)
Sang-Yeon Cho, Duke Univ. (United States)
Mikkel Thomas, Georgia Institute of Technology (United States)
Jeffrey Lillie, Georgia Institute of Technology (United States)
Daeik Kim, Duke Univ. (United States)
Stephen Ralph, Georgia Institute of Technology (United States)
Karla Dennis, Georgia Institute of Technology (United States)
Benita Comeau, Georgia Institute of Technology (United States)
Cliff Henderson, Georgia Institute of Technology (United States)

Published in SPIE Proceedings Vol. 5730:
Optoelectronic Integration on Silicon II
Joel A. Kubby; Ghassan E. Jabbour, Editor(s)

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