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可调谐微流控微透镜

Tunable microfluidic microlenses.

作者信息

Werber Armin, Zappe Hans

机构信息

Laboratory for Micro-optics, Institute of Microsystem Technology, University of Freiburg, Georges-Köhler-Allee 102, 79110 Freiburg, Germany.

出版信息

Appl Opt. 2005 Jun 1;44(16):3238-45. doi: 10.1364/ao.44.003238.

Abstract

A novel type of liquid microlens, bounded by a microfabricated, distensible membrane and activated by a microfluidic liquid-handling system, is presented. By use of an elastomer membrane fabricated by spin coating onto a dry-etched silicon substrate, the liquid-filled cavity acts as a lens whereby applied pressure changes the membrane distension and thus the focal length. Both plano-convex and plano-concave lenses, individual elements as well as arrays, were fabricated and tested. The lens surface roughness was seen to be approximately 9 nm rms, and the focal length could be tuned from 1 to 18 mm. This lens represents a robust, self-contained tunable optical structure suitable for use in, for example, a medical environment.

摘要

本文介绍了一种新型液体微透镜,它由微加工的可扩张膜界定,并由微流控液体处理系统激活。通过旋涂在干法蚀刻的硅基板上制造弹性体膜,充液腔充当透镜,施加的压力会改变膜的扩张程度,从而改变焦距。制造并测试了平凸透镜、平凹透镜、单个元件以及阵列。透镜表面粗糙度的均方根约为9 nm,焦距可在1至18 mm之间调节。这种透镜是一种坚固、独立的可调谐光学结构,适用于例如医疗环境。

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