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Variable optofluidic slit aperture

机译:可变的光流体狭缝孔径

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摘要

The shape of liquid interfaces can be precisely controlled using electrowetting, an actuation mechanism which has been widely used for tunable optofluidic micro-optical components such as lenses or irises. We have expanded the considerable flexibility inherent in electrowetting actuation to realize a variable optofluidic slit, a tunable and reconfigurable two-dimensional aperture with no mechanically moving parts. This optofluidic slit is formed by precisely controlled movement of the liquid interfaces of two highly opaque ink droplets. The 1.5 mm long slit aperture, with controllably variable discrete widths down to 45 µm, may be scanned across a length of 1.5 mm with switching times between adjacent slit positions of less than 120 ms. In addition, for a fixed slit aperture position, the width may be tuned to a minimum of 3 µm with high uniformity and linearity over the entire slit length. This compact, purely fluidic device offers an electrically controlled aperture tuning range not achievable with extant mechanical alternatives of a similar size.
机译:液体界面的形状可以使用电润湿来精确控制,电润湿是一种已广泛用于可调光流体微光学组件(如透镜或虹膜)的致动机制。我们已经扩展了电润湿致动所固有的相当大的灵活性,以实现可变的光流体缝隙,可调节且可重新配置的二维孔径,而无需机械移动的部件。该光流体狭缝是通过精确控制两个高度不透明的墨滴的液体界面的运动而形成的。 1.5 mm长的狭缝孔径,可控制的离散宽度低至45 µm,可扫描1.5 mm的长度,相邻狭缝位置之间的切换时间小于120 ms。另外,对于固定的狭缝孔位置,可以在整个狭缝长度上以高的均匀性和线性将宽度调整为最小3μm。这种紧凑的纯流体装置可提供电控孔径调节范围,而现有的类似尺寸机械替代方案无法实现。

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