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Integral Field Unit Spectrograph for Extremely Large Telescopes

机译:大型望远镜的整体场单位光谱仪

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We have carried out a concept study for a wide-field monolithic integral field unit (IFU) spectrograph for extremely large telescopes (ELTs). We target in this paper the technological challenges that have to be faced in order to build such an instrument, focusing on the adaptive optics (AO) requirements, the image slicer technology, and the detectors status. We also address the main science drivers, together with the concept design and the expected performance applied to the European-ELT (E-ELT) case. A monolithic wide-field spectrograph provides a continuous field of view (FOV) separated by a field splitter in several subfields, each of them feeding a module featuring an image slicer, a collimator and a spectrograph. The use of image slicers provides 3D spectrographic images of the complete FOV, allowing for detection and study of sources without need of targeting them, a very useful property especially for the deep observation of faint high-redshift objects, whose density on the sky is expected to be quite high. In light of this discussion, we suggest the advantages of using shorter wavelengths and its implication in both the scientific program and the budget.
机译:我们已经对用于超大型望远镜(ELT)的宽视野单片积分场单元(IFU)光谱仪进行了概念研究。在本文中,我们针对制造这种仪器必须面对的技术挑战,重点是自适应光学(AO)要求,图像切片器技术和检测器状态。我们还将探讨主要的科学驱动因素,以及应用于欧洲ELT(E-ELT)案例的概念设计和预期性能。整体式宽视场光谱仪提供了一个连续的视场(FOV),该视场由分场器在几个子场中分开,每个子场都馈入一个具有图像切片器,准直仪和光谱仪的模块。图像切片器的使用可提供完整FOV的3D光谱图像,无需进行瞄准即可进行源的检测和研究,这是非常有用的特性,特别是对于深观察高密度红移物体(其预期在天空上密度)的深度观察很高。根据这一讨论,我们建议使用较短波长的优势及其对科学计划和预算的影响。

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