Applied Physics Letters · 2013 · 55 citations · 24 references
Optical DesignOptical MaterialsEngineeringMicroscopyFluid MechanicsOptic DesignBiomedical EngineeringMicro-optical ComponentOptical PropertiesCapillarity PhenomenonMm Optical ApertureOptical SystemsMicrofluidicsTypical LiquidOphthalmologySurface TensionVariable-focus LensLiquid LensGeometrical OpticLiquid–membrane–liquid StructureMedicine
We report a liquid lens with a liquid–membrane–liquid structure in order to realize a variable-focus lens with a large optical aperture. We studied a typical liquid lens with a liquid–liquid structure and examined its physical limitation, namely, the capillary length, restricting the design of a larger-aperture liquid lens. We propose using elastic force instead of surface tension to acquire a much longer capillary length. We demonstrated that this approach can achieve sufficiently long capillary length when external pressure is loaded. A prototype lens with 30 mm aperture was constructed, and a resolution of 8.00 lp/mm was realized.
24
Variable-focus liquid lens for miniature cameras
S. Kuiper, B.H.W. Hendriks · Applied Physics Letters · 2004 · 1K citations · Full text
Adaptive liquid microlenses activated by stimuli-responsive hydrogels
Liang Dong, Abhishek Agarwal, David J. Beebe et al. · Nature · 2006 · 1K citations
Mechanical properties of silicones for MEMS
Florian Schneider, Thomas Fellner, Jürgen Wilde et al. · Journal of Micromechanics and Microengineering · 2008 · 424 citations