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Wavefront sensing by an aperiodic diffractive microlens array

机译:由非周期性衍射微透镜阵列的波前感应

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Shack-Hartmann sensors are commonly used wavefront sensors in a large field of applications, like adaptive optics, beam characterization and non-contact measurements. They are popular because of the ease of use and the robustness of the sensor. We introduce a new way to improve the performance of miniaturized and mass-producible optical wavefront sensors for industrial inspection: A sensor design due to an aperiodic diffractive element working as microlens array allows the use of small and cost-efficient detector chips. The diffractive element was optimized using raytracing and thin element approximation (done in Zemax). As an example, we present the design and realization of a sensor for laboratory use with a measurement diameter of 20mm. We show an example measurement and results concerning dynamic range. The measurement accuracy was determined by measuring spherical waves.
机译:Shack-Hartmann传感器是常用的波前传感器在大型应用领域,如自适应光学,光束表征和非接触式测量。它们由于传感器的易用性和鲁棒性而流行。我们介绍了一种新的方式来提高小型化和批量生产光波美孚传感器的工业检测的性能:由于作为微透镜阵列的非周期性衍射元件而导致的传感器设计允许使用小型且经济效率的探测器芯片。衍射元件使用次数和薄元素近似进行了优化(在Zemax中完成)。例如,我们介绍了用于实验室使用的传感器的设计和实现,测量直径为20mm。我们展示了一个关于动态范围的示例测量和结果。测量精度通过测量球形波来确定。

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