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Active reflective components for adaptive optical zoom systems.

机译:自适应光学变焦系统的有源反射组件。

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摘要

This dissertation presents the theoretical and experimental exploration of active reflective components specifically for large-aperture adaptive optical zoom systems. An active reflective component can change its focal length by physically deforming its reflecting surface. Adaptive optical zoom (AOZ) utilizes active components in order to change magnification and achieve optical zoom, as opposed to traditional zooming systems that move elements along the optical axis.;AOZ systems are theoretically examined using a novel optical design theory that enables a full-scale tradespace analysis, where optical design begins from a broad perspective and optimizes to a particular system. The theory applies existing strategies for telescope design and aberration simulation to AOZ, culminating in the design of a Cassegrain objective with a 3.3X zoom ratio and a 375mm entrance aperture.;AOZ systems are experimentally examined with the development of a large-aperture active mirror constructed of a composite material called carbon fiber reinforced polymer (CFRP). The active CFRP mirror uses a novel actuation method to change radius of curvature, where actuators press against two annular rings placed on the mirror's back. This method enables the radius of curvature to increase from 2000mm to 2010mm. Closed-loop control maintains good optical performance of 1.05 waves peak-to-valley (with respect to a HeNe laser) when the active CFRP mirror is used in conjunction with a commercial deformable mirror.
机译:本文提出了用于大光圈自适应光学变焦系统的有源反射组件的理论和实验探索。有源反射组件可以通过使反射表面发生物理变形来更改其焦距。与传统的沿光轴移动元件的变焦系统相反,自适应光学变焦(AOZ)利用有源组件来改变放大倍率并实现光学变焦。在理论上,AOZ系统使用新颖的光学设计理论进行了研究,该理论可实现全光学变焦。大规模贸易空间分析,从广义的角度出发,进行光学设计并针对特定系统进行优化。该理论将现有的望远镜设计和像差模拟策略应用于AOZ,最终设计出了具有3.3倍变焦倍率和375mm入射光阑的卡塞格林物镜。;随着大孔径有源镜的发展,对AOZ系统进行了实验检验由称为碳纤维增强聚合物(CFRP)的复合材料制成。主动式CFRP反射镜使用新颖的致动方法来改变曲率半径,其中致动器压在放置在反射镜背面的两个环形环上。此方法可使曲率半径从2000mm增加到2010mm。当将有源CFRP反射镜与商用可变形反射镜结合使用时,闭环控制可保持1.05峰峰谷的光学性能(相对于HeNe激光)。

著录项

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Engineering Mechanical.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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