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Using two MEMS deformable mirrors in an adaptive optics testbed for multi-conjugate correction

机译:在自适应光学测试台中使用两个MEMS变形镜进行多共轭校正

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摘要

Adaptive optics systems have advanced considerably over the past decade and have become common tools for optical engineers. The most recent advances in adaptive optics technology have lead to significant reductions in the cost of most of the key components. Most significantly, the cost of deformable elements and wavefront sensor components have dropped to the point where multiple deformable mirrors and Shack-Hartmann array based wavefront sensor cameras can be included in a single system. Matched with the appropriate hardware and software, formidable systems can be operating in nearly any sized research laboratory. The significant advancement of MEMS deformable mirrors has made them very popular for use as the active corrective element in multi-conjugate adaptive optics systems so that, in particular for astronomical applications, this allows correction in more than one plane. The NRL compact AO system and atmospheric simulation systems has now been expanded to support Multi Conjugate Adaptive Optics (MCAO), taking advantage of using the liquid crystal spatial light modulator (SLM) driven aberration generators in two conjugate planes that are well separated spatially. Thus, by using two SLM based aberration generators and two separate wavefront sensors, the system can measure and apply wavefront correction with two MEMS deformable mirrors. This paper describes the multi-conjugate adaptive optics system and the testing and calibration of the system and demonstrates preliminary results with this system.
机译:自适应光学系统在过去的十年中取得了长足的进步,并已成为光学工程师的常用工具。自适应光学技术的最新进展已大大降低了大多数关键组件的成本。最重要的是,可变形元件和波前传感器组件的成本下降到了可以在单个系统中包含多个可变形反射镜和基于Shack-Hartmann阵列的波前传感器相机的成本。配合适当的硬件和软件,强大的系统几乎可以在任何规模的研究实验室中运行。 MEMS可变形反射镜的显着进步使其在多共轭自适应光学系统中作为有源校正元件非常受欢迎,因此,尤其是在天文应用中,它可以在一个以上的平面中进行校正。 NRL紧凑型AO系统和大气模拟系统现已扩展为支持多共轭自适应光学(MCAO),它利用了在两个空间上间隔良好的共轭平面中使用液晶空间光调制器(SLM)驱动的像差发生器的优势。因此,通过使用两个基于SLM的像差发生器和两个单独的波前传感器,系统可以使用两个MEMS变形镜来测量和应用波前校正。本文介绍了多共轭自适应光学系统以及该系统的测试和校准,并演示了该系统的初步结果。

著录项

  • 来源
    《MEMS adaptive optics IV》|2010年|P.75950A.1-75950A.10|共10页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Naval Research Laboratory, Remote Sensing Division, Code 7216, 3550 Aberdeen Ave SE, Kirtland AFB, NM 87117;

    Naval Research Laboratory, Remote Sensing Division, Code 7216, 3550 Aberdeen Ave SE, Kirtland AFB, NM 87117;

    Electrical Engineering Department, New Mexico Tech, 801 Leroy Place, Socorro, NM 87801;

    rnNaval Research Laboratory, Remote Sensing Division, Code 7216, 3550 Aberdeen Ave SE, Kirtland AFB, NM 87117;

    Naval Research Laboratory, Remote Sensing Division, Code 7216, 3550 Aberdeen Ave SE, Kirtland AFB, NM 87117;

    Naval Research Laboratory, Remote Sensing Division, Code 7216, 3550 Aberdeen Ave SE, Kirtland AFB, NM 87117;

    Narrascape, Inc. 737 Loma Vista Dr. NE, Albuquerque, NM87106;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微电子学、集成电路(IC);
  • 关键词

  • 入库时间 2022-08-26 13:44:19

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