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Characterization of Tunable Micro-Lenses with a Versatile Optical Measuring System

机译:多功能光学测量系统可调谐微透镜的特性

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摘要

In this work, we present the results of the opto–electro–mechanical characterization of tunable micro-lenses, Tlens®, performed with a single-spot optical measuring system. Tested devices are composed of a transparent soft polymer layer that is deposited on a supporting glass substrate and is covered by a glass membrane with a thin-film piezoelectric actuator on top. Near-infrared optical low-coherence reflectometry is exploited for both static and low-frequency dynamic analyses in the time domain. Optical thickness of the layers and of the overall structure, actuation efficiency, and hysteretic behavior of the piezo-actuator as a function of driving voltage are obtained by processing the back-reflected signal in different ways. The use of optical sources with relatively short coherence lengths allows performing interferometric measurements without spurious resonance effects due to multiple parallel interfaces, furthermore, selecting the plane/layer to be monitored. We finally report results of direct measurements of Tlens® optical power as a function of driving voltage, performed by redirecting a He-Ne laser beam on the lens and monitoring the focused spot at various distances with a digital camera.
机译:在这项工作中,我们介绍了使用单点光学测量系统对可调谐微透镜Tlens ®进行的光电机械表征结果。被测设备由透明的软聚合物层组成,该层沉积在支撑玻璃基板上,并被玻璃膜覆盖,顶部有薄膜压电致动器。近红外光学低相干反射法在时域中用于静态和低频动态分析。通过以不同方式处理背反射信号,可以获得层的光学厚度以及整个结构的光学厚度,致动效率以及压电致动器的磁滞行为与驱动电压的关系。相干长度相对较短的光源的使用允许进行干涉测量,而不会由于多个平行界面而产生寄生谐振效应,此外,还可以选择要监视的平面/层。我们最后报告了直接测量Tlens ®光功率与驱动电压的关系的结果,该结果是通过重定向透镜上的He-Ne激光束并用数码相机监视不同距离的聚焦点来执行的。

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