Optofluidic Waveguiding for Biomedical Sensing

Author:

Wall Thomas A.,Parks Joshua,Leake Kaelyn D.,Schmidt Holger,Hawkins Aaron R.

Abstract

ABSTRACTWe review an optofluidic waveguiding lab-on-a-chip used to sense bioparticles. The sensor uses a liquid filled Anti-Resonant Reflecting Optical Waveguide (ARROW) that is interfaced with standard ridge waveguides. The ridge waveguides are coupled to off-chip lasers and detectors via optical fiber. A perpendicular intersection between the ARROW and a ridge waveguide is especially useful for detecting fluorescently tagged particles. Light coupled into the ridge waveguide can fluorescently excite these particles within a very small volume. Fluorescent signal can then be guided within the ARROW and subsequently off chip to a detector.We also discuss how such devices are fabricated. Both the ARROW and ridge waveguides are made using alternating thin films of tantalum oxide and silicon dioxide on silicon substrates. These thin films are deposited by either sputtering or plasma enhanced chemical vapor deposition (PECVD). The waveguides are patterned using a combination of standard photolithographic processes, reactive ion etching, and sacrificial etching. Low-loss optical guiding is very dependent on both the waveguide structure and the materials used. The latest processes for maximizing detection sensitivity are reviewed.We also present results using the optofluidic waveguiding sensor for detecting a variety of different types of particles such as fluorescently labeled nanobeads, viruses, ribosomes, and RNA.

Publisher

Springer Science and Business Media LLC

Subject

General Engineering

Reference22 articles.

1. Integrated hollow waveguides with arch-shaped cores

2. Optimized piranha etching process for SU8-based MEMS and MOEMS construction;Holmes;Journal of Micromechanics and Microengineering,2010

3. Handbook of Semiconductor Interconnection Technology

4. 18. Zhao Y ., Low-Photoluminescence hollow waveguide platforms for high-sensitivity integrated optical sensors, Brigham Young University. Department of Electrical and Computer Engineering, 2011. p. 1 online resource (xvi, 148 pages).

5. Hollow waveguides with low intrinsic photoluminescence fabricated with Ta2O5 and SiO2 films;Zhao;Applied Physics Letters,2011

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