4.7 Article

Large scale arrays of tunable microlenses

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LAB ON A CHIP
卷 14, 期 7, 页码 1330-1335

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c3lc51170g

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We demonstrate a simple and robust method to produce large 2-dimensional and quasi-3-dimensional arrays of tunable liquid microlenses using a time varying external electric field as the only control parameter. With increasing frequency, the shape of the individual lensing elements (similar to 40 mu m in diameter) evolves from an oblate (lentil shaped) to a prolate (egg shaped) spheroid, thereby making the focal length a tunable quantity. Moreover, such microlenses can be spatially localized in desired configurations by patterning the electrode. This system has the advantage that it provides a large dynamic range of shape deformation (with a response time of similar to 30 ms for the whole range of deformation), which is useful in designing adaptive optics.

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