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Design Framework for High-Speed 3D Scanning Tools and Development of an Axial Focusing Micromirror-Based Array

机译:高速3D扫描工具的设计框架和基于轴向聚焦微镜阵列的开发

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Rapid 3D optical scanning of points or patterned light is widely employed across applications in microscopy, material processing, adaptive optics and surveying. Despite this broadness in applicability, embodiments of 3D scanning tools may vary considerably as a result of the specific performance needs of each application. We present here a micromirror array-based modular framework for the systemic design of such high-speed scanning tools. Our framework combines a semi-custom commercial fabrication process with a comprehensive simulation pipeline in order to optimally reconfigure pixel wiring schemes across specific applications for the efficient allocation of available degrees of freedom. As a demonstration of this framework and to address existing bottlenecks in axial focusing, we produced a 32-ring concentric micromirror array capable of performing random-access focusing for wavelengths of up to 1040 nm at a response rate of 8.75 kHz. By partitioning the rings into electrostatically driven piston-mode pixels, we are able to operate the array through simple open-loop 30 V drive, minimizing insertion complexity, and to ensure stable operation by preventing torsional failure and curling from stress. Furthermore, by taking advantage of phase-wrapping and the 32 degrees of freedom afforded by the number of independently addressable rings, we achieve good axial resolvability across the tool's operating range with an axial full-width-half-maximum to range ratio of 3.5% as well as the ability to address focus depth-dependent aberrations resulting from the optical system or sample under study.
机译:快速的3D光学扫描点或图案光的光学扫描在显微镜,材料处理,自适应光学和测量中的应用中广泛使用。尽管适用性具有这种宽度,但是3D扫描工具的实施例可能由于每个应用程序的特定性能需求而变化。我们在这里介绍了一种基于微镜阵列的模块化框架,用于这种高速扫描工具的系统设计。我们的框架结合了半仿商业制造过程,具有综合模拟管道,以便在特定应用中最佳地重新配置像素接线方案,以便有效地分配可用自由度。作为该框架的示范和解决轴向聚焦中的现有瓶颈,我们生产了32环同心微镜阵列,其能够以8.75kHz的响应速率执行高达1040nm的随机访问聚焦。通过将环划分为静电驱动的活塞模式像素,我们能够通过简单的开环30 V驱动器操作阵列,最大限度地减少插入复杂度,并通过防止扭转故障和从应力卷曲来确保稳定运行。此外,通过利用相相包装和由独立可寻址环的数量提供的32度自由度,我们在工具的操作范围内实现了良好的轴向解析性,轴向全宽半最大到范围比为3.5%除了在研究中寻址由光学系统或样品产生的聚焦深度依赖像差的能力。

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