Abstract
We demonstrate tunable, fluidic, two-dimensional diffraction gratings based on a microfluidic platform comprising a flow-focusing bubble generator and flowing, regular lattices of bubbles formed by dynamic self-assembly. The structure of these lattices can be tuned with switching times of less than ten seconds by changing the pressures and rates of flow applied to the device. These diffraction gratings exhibit high stability (over hours of operation if properly designed and operated). For our devices, we achieved tunable ranges in pitch from 12 to 51 μm, corresponding to first-order diffraction angles from 3.2° to 0.7° for light with a wavelength of 632 nm. © 2006 Wiley-VCH Verlag GmbH & Co. KGaA.
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Hashimoto, M., Mayers, B., Garstecki, P., & Whitesides, G. M. (2006). Flowing lattices of bubbles as tunable, self-assembled diffraction gratings. Small, 2(11), 1292–1298. https://doi.org/10.1002/smll.200600211
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