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Optimized actuators for ultrathin deformable primary mirrors

机译:优化的致动器,用于超薄可变形主镜

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摘要

A novel design and selection scheme for surface-parallel actuators for ultrathin, lightweight mirrors is presented. The actuation system consists of electrodes printed on a continuous layer of piezoelectric material bonded to an optical-quality substrate. The electrodes provide almost full coverage of the piezoelectric layer, in order to maximize the amount of active material that is available for actuation, and their shape is optimized to maximize the correctability and stroke of the mirror for a chosen number of independent actuators and for a dominant imperfection mode. The starting point for the design of the electrodes is the observation that the correction of a figure error that has at least two planes of mirror symmetry is optimally done with twin actuators that have the same optimized shape but are rotated through a suitable angle. Additional sets of optimized twin actuators are defined by considering the intersection between the twin actuators, and hence an arbitrarily fine actuation pattern can be generated. It is shown that this approach leads to actuator systems with better performance than simple, geometrically based actuators. Several actuator patterns to correct third-order astigmatism aberrations are presented, and an experimental demonstration of a 41-actuator mirror is also presented.
机译:提出了用于超薄,轻量镜的表面平行致动器的新颖设计和选择方案。致动系统由印刷在压电材料连续层上的电极组成,该压电材料层粘结在光学质量的基材上。电极几乎覆盖了整个压电层,以使可用于驱动的​​活性材料量最大化,并且优化了电极的形状,以使选定数量的独立致动器和镜面的反射镜的可校正性和行程最大化。显性缺陷模式。电极设计的出发点是观察到,至少具有两个镜像对称平面的图形误差的校正是使用具有相同优化形状但旋转适当角度的双致动器最佳地完成的。通过考虑双执行器之间的交点来定义其他优化双执行器组,因此可以生成任意精细的执行模式。结果表明,与简单的基于几何的执行器相比,这种方法可以使执行器系统具有更好的性能。介绍了几种校正三阶像散像差的致动器模式,还提供了一个41致动器反射镜的实验演示。

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