首页> 外文会议>NATO Advanced Study Institute on Optics in Astrophysics; 20020916-28; Cargese(FR) >HECTOMETRIC OPTICAL TELESCOPES ESO'S 100-M OWL TELESCOPE CONCEPT
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HECTOMETRIC OPTICAL TELESCOPES ESO'S 100-M OWL TELESCOPE CONCEPT

机译:百米光学望远镜可望见ESO的100 M OWL望远镜概念

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摘要

The quest for larger telescopes is a never-ending story. Astronomers having very few other ways to perform experimentation, this quest has closely followed the path of technology development, and even promoted it more than once. Traditional design approaches, and above all technology limitations, have limited gains in size to a mere factor 2 between successive generations. We argue that such limitations have recently shifted from the realm of poorly reliable glass-making and opto-mechanical alignment to that of predictable control systems and large-scale mechanical structures. Novel design approaches taking full benefit of such evolution will, therefore, enable the design, construction and operation of facilities hugely more powerful than currently available. A crucial assumption is that giant telescopes could take full benefit of adaptive optics, a technique currently under rapid development. We elaborate on the design of ESO's concept for a 100-m class, diffraction-limited telescope.
机译:对更大望远镜的追求是一个永无止境的故事。天文学家几乎没有其他进行实验的方法,这个追求紧密地遵循了技术发展的道路,甚至不止一次地促进了它的发展。传统的设计方法以及最重要的技术限制是,在连续几代之间,尺寸的增加只能达到2倍。我们认为,这种局限性已从可靠的玻璃制造和光机械对准领域转移到了可预测的控制系统和大型机械结构领域。因此,充分利用这种发展优势的新颖设计方法将使设施的设计,建造和运营比目前可用的设施强大得多。一个关键的假设是,巨型望远镜可以充分利用自适应光学技术,该技术目前正在迅速发展。我们详细介绍了ESO的100 m级衍射极限望远镜的概念设计。

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