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Multi-object medium resolution optical spectroscopy at the E-ELT

机译:E-ELT的多目标中分辨率光学光谱

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We present the design of a compact medium resolution spectrograph (R~ 15,000-20,000), intended to operate on a 42m telescope in seeing-limited mode. Our design takes full advantage of some new technology optical components, like volume phase holographic (VPH) gratings. At variance with the choice of complex large echelle spectrographs, which have been the standard on 8m class telescopes, we selected an efficient VPH spectrograph with a limited beam diameter, in order to keep overall dimensions and costs low, using proven available technologies. To obtain such a resolution, we need to moderately slice the telescope image plane onto the spectrograph entrance slit (5-6 slices). Then, standard telescope AO-mode (GLAO, Ground Layer Adaptive Optics) can be used over a large field of view (~10 arcmin), without loosing efficiency. Multiplex capabilities can greatly increase the observing efficiency. A robotic pick-up mirror system can be implemented, within conventional environmental conditions (temperature, pressure, gravity, size), demanding only standard mechanical and optical tolerances. A modular approach allows us scaling multiplex capabilities on overall costs and available space.
机译:我们介绍了一种紧凑型中分辨率光谱仪(R〜15,000-20,000)的设计,该光谱仪旨在在视距受限模式下在42m望远镜上运行。我们的设计充分利用了一些新技术的光学组件,例如体相全息(VPH)光栅。在选择复杂的大型阶梯光谱仪(这是8m类望远镜的标准)的过程中,我们选择了一种有效的VPH光谱仪,该光谱仪具有有限的光束直径,以使用经过验证的可用技术保持较低的整体尺寸和成本。为了获得这样的分辨率,我们需要将望远镜像平面适度切片到光谱仪入口狭缝上(5-6片)。然后,可以在较大的视场(〜10 arcmin)上使用标准望远镜的AO模式(GLAO,地面层自适应光学),而不会降低效率。复用功能可以大大提高观测效率。可以在传统的环境条件(温度,压力,重力,尺寸)内实现自动拾取镜系统,仅要求标准的机械和光学公差。模块化方法使我们能够在总体成本和可用空间上扩展复用功能。

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