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The AVES adaptive optics spectrograph for the VLT: status report

机译:VLT的AVES自适应光学光谱仪:状态报告

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We report on the status of AVES, the Adaptive-optics Visual Echelle Spectrograph proposed for the secondary port of the Nasmyth Adaptive Optics System (NAOS) recently installed at the VLT. AVES is an intermediate resolution (R~16,000) high-efficiency fixed-format echelle spectrograph which operates in the spectral band 500 -1,000 nm. In addition to a high intrinsic efficiency, comparable to that of ESI at Keck II, it takes advantage of the adaptive optics correction provided by NAOS to reduce the sky and detector contribution in background-limited observations of weak sources, thus allowing a further magnitude gain with respect to comparable non-adaptive optics spectrographs. Simulations show that the instrument will be capable of reaching a magnitude V=22.5 at S/N>10 in two hours, two magnitudes weaker than GIRAFFE at the same resolution and 3 magnitudes weaker than the higher resolution UVES spectrograph. Imaging and coronographic functions have also been implemented in the design. We present the results of the final design study and we discuss the technical and operational issues related to its implementation at the VLT as a visitor instrument. We also discuss the possibility of using a scaled-up non-adaptive optics version of the same design as an element of a double- or triple-arm intermediate-resolution spectrograph for the VLT. Such an option looks attractive in the context of a high-efficiency large-bandwith (320 - 1,500 nm) spectrograph ("fast-shooter") being considered by ESO as a 2nd-generation VLT instrument.
机译:我们报告了AVES的状态,这是为最近安装在VLT上的Nasmyth自适应光学系统(NAOS)的次要端口建议的自适应光学视觉埃歇尔光谱仪。 AVES是一种中分辨率(R〜16,000)高效固定格式echelle光谱仪,在500 -1,000 nm的光谱带中运行。除了具有很高的本能效率(可与Keck II的ESI相比)之外,它还利用了NAOS提供的自适应光学校正功能来减少天空和探测器在弱源的背景受限观测中的贡献,从而获得更大的幅度增益关于类似的非自适应光学光谱仪。仿真表明,该仪器将能够在两个小时内达到S / N> 10的量级V = 22.5,在相同分辨率下比GIRAFFE弱两个量级,并且比高分辨率UVES光谱仪弱三个量级。成像和冠状动脉造影功能也已在设计中实现。我们介绍了最终设计研究的结果,并讨论了作为访客工具的VLT实施与之相关的技术和运营问题。我们还讨论了使用相同设计的放大非自适应光学器件版本作为VLT双臂或三臂中分辨率光谱仪的元素的可能性。在ESO将高效大带宽(320-1,500 nm)光谱仪(“快速射击仪”)视为第二代VLT仪器的情况下,这种选择看起来很有吸引力。

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