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Designing the METIS adaptive optics system

机译:设计METIS自适应光学系统

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METIS, the Mid-infrared E-ELT Imager and Spectrometer is foreseen to be the third instrument on the EuropeanExtremely Large Telescope (E-ELT) and the only instrument to provide high sensitivity mid-IR imaging andspectroscopy to the E-ELT.In order to reach the maximum resolution and sensitivity, an adaptive optics system is required. Since the operationalwavelength of METIS is the longest of all E-ELT instruments and the field is relatively small, the complexity of the AOsystem is significantly reduced, both in required speed as well as order of the AO system.Adaptive Optics has been demonstrated to deliver consistently high performance for the current generation of 6-10 meterclass telescopes at mid-infrared wavelengths, and similar performance is expected for METIS on the E-ELT. But in orderto provide a reliable system on the E-ELT, several effects which have a minor impact on 6-8 meter class telescopes willneed to be investigated for their impact on METIS AO. These effects include refractivity, atmospheric compositionvariations, but also the operation in a complex operational environment given by both METIS as well as the E-ELT. Inthis paper we describe the scientific requirements on the METIS AO system, the specific issues related to AdaptiveOptics in the mid-IR and expected performance of the METIS AO system on the E-ELT.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:预计METIS,中红外E-ELT成像仪和光谱仪将成为欧洲超大型望远镜(E-ELT)上的第三台仪器,并且是唯一可为E-ELT提供高灵敏度中红外成像和光谱学的仪器。为了达到最大的分辨率和灵敏度,需要一个自适应光学系统。由于METIS的工作波长是所有E-ELT仪器中最长的,并且该领域相对较小,因此在所需的速度和AO系统的阶数方面,AO系统的复杂性都大大降低了。对于当前的6-10米级望远镜,在中红外波长下始终保持高性能,并且在E-ELT上对METIS有望获得类似的性能。但是,为了在E-ELT上提供可靠的系统,将需要研究对6-8米级望远镜产生较小影响的几种效应对METIS AO的影响。这些影响包括折射率,大气成分变化,还包括METIS和E-ELT在复杂操作环境中的操作。在本文中,我们描述了对METIS AO系统的科学要求,与中红外中的AdaptiveOptics有关的特定问题以及METIS AO系统在E-ELT上的预期性能。©(2012)COPYRIGHT光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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