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Femtosecond laser-assisted etching of three-dimensional inverted-woodpile structures in fused silica

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OPTICS LETTERS
卷 37, 期 10, 页码 1682-1684

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OPTICAL SOC AMER
DOI: 10.1364/OL.37.001682

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  1. Natural Sciences and Engineering Research Council of Canada
  2. Canadian Institute for Photonic Innovations

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Three-dimensional inverted-woodpile (WP) structures were embedded in a microchannel by femtosecond laser direct-writing of fused silica followed by chemical etching with diluted hydrofluoric acid. We show the hole size is linearly dependent on laser-scanning depth for various pulse energies, permitting the control of laser exposures to facilitate close 5 mu m periodic packing of uniform microcapillary arrays. Exposure compensation for depth-dependent etching rate and optical beam aberrations yielded stable and crack-free uniform inverted-WP structures. The direct formation of the inverted-WP structure together with microchannels in an all-fused silica substrate, offers chemical stability and inertness, and biocompatibility to be exploited as new microfluidic systems for chromatography and electro-osmotic pumps. (C) 2012 Optical Society of America

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