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An analytic model for the study of the impact of mirror segmentation on AO performance, and application to a 30 m segmented telescope

机译:镜面分割对AO性能影响的分析模型,以及30米分段望远镜的应用

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Primary mirrors of the next generation of extremely large telescopes will be highly segmented. Since these telescopes will be equipped with adaptive optics (AO), it is very important to examine in details what are the consequences of different segmentation schemes on the delivered image quality after AO correction. We do so using our analytical AO simulation code PAOLA, upgraded to include AO correction of the primary mirror static aberrations. This study allows us to derive requirements on the geometry of the primary mirror, and the maximum acceptable segments positioning and figuring errors knowing that part of their amplitude will be corrected by the AO system offset. The first important issue is the influence of the segments size and gap width. These parameters have indeed a strong impact on the structure of the wings of the diffraction limited point spread function (PSF), but on the other hand, with the smooth AO residual halo superimposed onto it, the relative importance of the wing structures is decreased. To assess these effects, we consider the case of an AO system working in a near infrared classical mode on a 30-m segmented telescope and examine how the encircled energy radius and image contrast evolve with segment size and gap width. The second important issue is the effect of residual segment positioning & figuring errors after active optics and AO correction. Using appropriate metrics, we characterise the maximum acceptable segment positioning & figuring errors residuals in a classical AO mode, for one of the pupils studied in the first part of our work.
机译:新一代极大型望远镜的主镜将高度细分。由于这些望远镜将配备自适应光学(AO),它在细节是什么在AO修正后的交付图像质量的不同分割方案的后果检查是非常重要的。我们可能会使用我们的分析AO仿真代码PAOLA,升级,包括主镜的静态像差修正AO。这项研究使我们能够在主反射镜的几何形状派生的要求,和定位并找出错误知道它们的振幅的那部分的最大可接受的段将由AO系统偏移进行校正。第一个重要的问题是区段大小和间隙宽度的影响。这些参数的确在衍射限制的点扩散函数(PSF)的翼部的结构有很大的影响,但在另一方面,具有叠加在其上的平滑AO残余卤素,机翼结构的相对重要性降低。为了评估这些效果,我们考虑一个AO系统在近红外经典模式工作的一个30米的情况下,分段的望远镜和检查包围能量半径和图像对比度与演变段大小和间隙宽度如何。第二个重要的问题是剩余分段定位与主动光学和AO校正之后辩别错误的影响。使用合适的衡量标准,我们描述的最大可接受段定位和盘算误差残差经典AO模式,对我们工作的第一部分研究的学生之一。

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