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Ultralightweight deformable mirrors

机译:超轻型可变形镜

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摘要

This paper presents a concept for ultralightweight deformable mirrors, based on a thin substrate of optical surface quality, coated with continuous active layers that provide separate modes of actuation at different length scales. This concept eliminates any kind of stiff backing structure for the mirror surface and exploits microfabrication technologies to provide tight integration of the active materials into the mirror structure, to avoid actuator print-through effects. Proof-of-concept, 10 cm diameter mirrors with an areal density of 0.6 kg/m~2 have been designed, built, and tested to measure their shape-correction performance and verify the finite-element models used for design. The low-cost manufacturing scheme involves low-temperature processing steps (below 140℃) to minimize residual stresses, does not require precision photolithography, and is therefore scalable to larger diameters depending on application requirements.
机译:本文提出了一种基于光学表面质量的薄基板的超轻型可变形反射镜的概念,该基板上涂有连续的有源层,这些有源层在不同的长度范围内提供了独立的驱动模式。该概念消除了镜面的任何种类的刚性背衬结构,并利用微细加工技术将活性材料紧密集成到镜面结构中,从而避免了执行机构的透印效果。已经设计,制造并测试了概念验证的直径为10厘米,面密度为0.6 kg / m〜2的镜子,以测量其形状校正性能并验证用于设计的有限元模型。低成本制造方案涉及低温处理步骤(低于140℃),以最大程度地减少残余应力,不需要精密的光刻,因此可以根据应用要求扩展到更大的直径。

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