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Optical design trade-offs of the multi conjugate adaptive optics relay for the European Extremely Large Telescope

机译:欧洲超大型望远镜的多共轭自适应光学中继的光学设计权衡

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The scope of this paper is to describe some possible design concepts of the post optical relay inside the multi conjugate adaptive optics module for the European Extremely Large Telescope. The module is planned to be placed at the Nasmyth focus of the telescope. The optical relay must re-image the telescope focal plane with diffraction limited performance and low geometric distortion, for a field of view of 75″ and for a wavelength range between 0.8 and 2.4 μm. A technical annular field of view with inner diameter of 75″ and outer diameter of 160″ to search 3 for natural guide stars is also required. Wavefront sensing is performed by means of 6 laser guide stars arranged on a circle of at least 120″ diameter while wavefront correction is performed by two deformable mirrors inside the relay, in addition to the telescope adaptive mirror. The final optical design will be a trade-off among adaptive optics performance, optical interface requirements, mechanical interface requirements and technological feasibility of key hardware components. The size of the deformable mirrors and the image quality of the layer conjugates are important design drivers, related to the design of the collimating optics after the input focal plane and to the deformable mirrors tilt respect to the chief ray. The optical interface at the output focal plane must be acceptable for the client instruments, in terms of field curvature, focal ratio and exit pupil position. The number of optical surfaces inside the relay has to be as small as possible to limit thermal background. Splitting of the laser guide star channel from the science light channel may be achieved either in wavelength, by means of a dichroic placed close to a pupil image, or in field, by means of an perforated dichroic placed at an intermediate focal plane. The laser guide star beams have to be focused with acceptable optical performance on a fixed image plane compensating the effects of the sodium layer range variation with Zenith angle during observations. Other relay configurations, in the case of further client instruments to be fed by the relay, are under investigation. The designs must also take into consideration the required clearance among the optical elements to avoid vignetting and mechanical interference issues, while fitting in the available space on the telescope Nasmyth platform. In this paper two different optical design configurations are analysed, taking into account all these aspects. For all the proposed designs the optical performance will be presented.
机译:本文的范围是描述用于欧洲超大型望远镜的多共轭自适应光学模块内部的后置光继电器的一些可能的设计概念。该模块计划放置在望远镜的纳斯密斯焦点。对于75英寸的视场以及0.8至2.4μm的波长范围,光学继电器必须以衍射受限的性能和低几何失真对望远镜焦平面进行重新成像。还需要一个技术上的环形视场,其内径为75英寸,外径为160英寸,以寻找3个自然导星。波前感测是通过布置在直径至少为120英寸的圆上的6颗激光制导星来执行的,而波前校正则是通过望远镜内部的两个可变形镜以及望远镜自适应镜来进行的。最终的光学设计将在自适应光学性能,光学接口要求,机械接口要求和关键硬件组件的技术可行性之间进行权衡。可变形反射镜的尺寸和共轭层的图像质量是重要的设计驱动力,与输入焦平面后的准直光学器件的设计以及可变形反射镜相对于主光线的倾斜有关。就视场曲率,焦比和出瞳位置而言,输出焦平面上的光学接口对于客户仪器必须是可接受的。继电器内部的光学表面数量必须尽可能小,以限制热本底。可以通过在光瞳附近放置的二向色镜在波长上实现激光引导星光通道与科学光通道的分离,或者通过在中间焦平面放置的穿孔二向色镜可以在野外实现激光引导星型通道与科学光通道的分离。激光导星束必须以可接受的光学性能聚焦在固定的图像平面上,以补偿观察期间钠层范围随天顶角变化的影响。在其他中继器配置要由中继器馈送的情况下,正在研究其他中继器配置。设计还必须考虑到光学元件之间所需的间隙,以避免渐晕和机械干扰问题,同时要适合望远镜Nasmyth平台上的可用空间。考虑到所有这些方面,本文分析了两种不同的光学设计配置。对于所有建议的设计,将介绍其光学性能。

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