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Testa, G. (author), Huang, Y. (author), Zeni, L. (author), Sarro, P.M. (author), Bernini, R. (author)
In this work we review recent results of our work on optofluidics. We show that single mode optofluidic waveguides with low loss can be realized using antiresonant reflecting optical confinement (ARROW). These waveguides can be fabricated using full standard silicon technology or hybrid silicon-polymer processes. ARROW waveguides have been used...
conference paper 2012
document
Testa, G. (author), Huang, Y. (author), Zeni, L. (author), Sarro, P. (author), Bernini, R. (author)
We report the design and the fabrication of an integrated optofluidic ring resonator based on liquid core antiresonant reflecting optical waveguide (ARROW) operating around ?=635nm with a water filled core (nc=1.33). This waveguide permits a strong coupling between light and analyte as the same microchannel can be used for delivering sample and...
conference paper 2011
document
Testa, G. (author), Huang, Y. (author), Zeni, L. (author), Sarro, P.M. (author), Bernini, R. (author)
Integrated liquid core AntiResonant Reflecting Optical Waveguide (ARROW) are used as basic component for the realization of complex optofluidic devices. Liquid core ARROW waveguides permit to confine the light in a low refractive index liquid core, by means of two high refractive index cladding layers designed to form a high reflectivity Fabry...
conference paper 2010