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Micro-deformable mirror for next generation adaptive optical systems

机译:下一代自适应光学系统的微可变形镜

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Next generation giant telescopes as well as next generation instrumentation for 10m-class telescopes relies on the availability of highly performing adaptive optical systems. Different types of AO systems are currently under study, including Multi-Conjugate AO (MCAO), high dynamic range AO, and low-order AO for distributed partial correction AO. These systems require a large variety of deformable mirrors with very challenging parameters. The development of new technologies based on micro-opto-electro-mechanical systems (MOEMS) is promising for future deformable mirrors. The major advantages of the micro-deformable mirrors (MDM) are their compactness, scalability, and specific task customization using elementary building blocks. We are currently developing a MDM based on an array of electrostatic actuators with attachments to a continuous mirror on top. A high optical quality mirror is the most challenging building block for this device. The originality of our approach lies in the elaboration of a sacrificial layer and of a structural layer made of polymer materials. With this structure, very efficient planarization has been obtained: the long-distance flatness is below 0.2 μm, the print-through of localized 9μm steps is reduced to below 0.5μm and a rms roughness of 15 nm has been measured over the surface. The integration of this mirror surface on top of an actuator array is under investigation.
机译:下一代巨型望远镜以及10M级望远镜的下一代仪器依赖于高度执行自适应光学系统的可用性。目前正在研究不同类型的AO系统,包括用于分布式部分校正AO的多共轭AO(MCAO),高动态范围AO和低阶AO。这些系统需要具有非常具有挑战性的参数的各种可变形镜。基于微光机械系统(MOEMS)的新技术的开发是未来可变形镜的对应。微可变形镜(MDM)的主要优点是它们使用基本构建块的紧凑性,可扩展性和特定的任务定制。我们目前正在基于一系列静电执行器开发MDM,其具有顶部的连续镜子附件。高光学质量镜是该设备最具挑战性的构建块。我们方法的原创性在于阐述牺牲层和由聚合物材料制成的结构层的制定。利用这种结构,已经获得了非常有效的平坦化:长距离平坦度低于0.2μm,将定位的9μm步骤的印刷减小到0.5μm以下,在表面上测量了15nm的RMS粗糙度。在执行器阵列顶部的整合在致动器阵列顶部的整合。

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