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Design and construction of a multiple beam laser projector and dynamically refocused wavefront sensor.

机译:多光束激光投影仪和动态重新聚焦的波前传感器的设计与构造。

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摘要

Adaptive optics using natural guide stars can produce images of amazing quality, but is limited to a small fraction of the sky due to the need for a relatively bright guidestar. Adaptive optics systems using a laser generated artificial reference can be used over a majority of the sky, but these systems have some attendant problems. These problems can be reduced by increasing the altitude of the laser return, and indeed a simple, single laser source focused at an altitude of 95 km on a layer of atmospheric sodium performs well for the current generation of 8--10 m telescopes. For future giant telescopes in the 20--30 m class, however, the errors due to incorrect atmospheric sampling and spot elongation will prohibit such a simple system from working.; The system presented in this dissertation provides a solution to these problems. Not only does it provide the 6.5m MMT with a relatively inexpensive laser guide star system with unique capabilities, it allows research into solving many of the problems faced by laser guide star systems on future giant telescopes.; The MMT laser guidestar system projects a constellation of five doubled Nd:YAG laser beams focused at a mean height of 25 km, with a dynamic refocus system that corrects for spot elongation and allows integrating the return from a 10 km long range gate. It has produced seeing limited spot sizes in ∼1 arcsecond seeing conditions, and has enabled the first on-sky results of Ground Layer Adaptive Optics (GLAO).
机译:使用自然制导星的自适应光学器件可以产生质量惊人的图像,但由于需要相对明亮的制导星,因此仅限于天空的一小部分。使用激光生成的人工参考的自适应光学系统可以在大部分天空中使用,但是这些系统存在一些伴随的问题。这些问题可以通过增加激光回波的高度来减轻,实际上,简单的,聚焦在95 km高度的大气钠层上的单个激光源对于当前的8--10 m望远镜表现良好。但是,对于未来的20--30 m级巨型望远镜,由于不正确的大气采样和光斑伸长而导致的误差将使这种简单的系统无法工作。本文提出的系统为这些问题提供了解决方案。它不仅为6.5m MMT提供了一种价格相对便宜且具有独特功能的激光导星系统,还允许进行研究以解决未来巨型望远镜上的激光导星系统所面临的许多问题。 MMT激光guidestar系统投射出五颗聚焦Nd:YAG激光束的星座,其平均聚焦高度为25 km,其动态重聚焦系统可以校正光斑的伸长,并允许对10 km长距离射门的返回进行积分。它在约1弧秒的观察条件下产生了有限的光斑尺寸,并启用了地面自适应光学(GLAO)的首次空中观测结果。

著录项

  • 作者

    Stalcup, Thomas Eugene, Jr.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Physics Astronomy and Astrophysics.; Physics Optics.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 293 p.
  • 总页数 293
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 天文学;光学;
  • 关键词

  • 入库时间 2022-08-17 11:40:39

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