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Characterization of Spatio-Temporal Dynamics of Deformable Mirrors

机译:变形镜的时空动力学特征

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Innovative technologies are needed to support and augment the development of various types of deformable mirrors (DM), such as Micro Electro Mechanical Systems (MEMS), segmented, bimorph and membrane types that are currently used in adaptive-optic (AO) systems. The paper discusses the results of initial studies that, could, potentially, be employed for full characterization of the dynamic behavior of adaptive optics mirrors. The experimental data were obtained from a typical bimorph mirror using both, a Shack-Hartman wavefront sensor (SHWFS) and an Imaging Laser Doppler Vibrometer (ILDV) developed exclusively by AS&T Inc. These two sensors were employed for quantitative measurement of both the spatial and temporal dynamics of the DM under broadband excitation via the piezo electric drive elements. The need to characterize the spatial and temporal dynamic response of current and future DM mirror designs is essential for optimizing their performance to a level adequate for high bandwidth AO systems, such as those employed for real-time compensation of wavefront perturbations.
机译:需要创新技术来支持和扩大各种类型的可变形反射镜(DM)的开发,例如微光学机械系统(MEMS),分段光学,双压电晶片和膜片类型,它们目前在自适应光学(AO)系统中使用。本文讨论了初步研究的结果,可以将其潜在地用于全面表征自适应光学镜的动态行为。实验数据是从典型的双压电晶片反射镜获得的,同时使用了由AS&T Inc.独家开发的Shack-Hartman波前传感器(SHWFS)和成像激光多普勒振动计(ILDV)。这两个传感器用于空间和空间的定量测量。经由压电驱动元件在宽带激励下的DM的时间动态。表征当前和未来DM镜设计的空间和时间动态响应的必要条件对于将其性能优化到足以满足高带宽AO系统(例如用于波前扰动实时补偿的系统)的水平至关重要。

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