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Project status of the Robert Stobie spectrograph near infrared instrument (RSS-NIR) for SALT

机译:Robert Stobie光谱仪近红外仪器(RSS-NIR)用于SALT的项目状态

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The Robert Stobie Spectrograph Near Infrared Instrument (RSS-NIR), a prime focus facility instrument for the 11-meter Southern African Large Telescope (SALT), is well into its laboratory integration and testing phase. RSS-NIR will initially provide imaging and single or multi-object medium resolution spectroscopy in an 8 arcmin field of view at wavelengths of 0.9 - 1.7 μm. Future modes, including tunable Fabry-Perot spectral imaging and polarimetry, have been designed in and can be easily added later. RSS-NIR will mate to the existing visible wavelength RSS-VIS via a dichroic beamsplitter, allowing simultaneous operation of the two instruments in all modes. Multi-object spectroscopy covering a wavelength range of 0.32 - 1.7 μm on 10-meter class telescopes is a rare capability and once all the existing VIS modes are incorporated into the NIR, the combined RSS will provide observational modes that are completely unique. The VIS and NIR instruments share a common telescope focal plane, and slit mask for spectroscopic modes, and collimator optics that operate at ambient observatory temperature. Beyond the dichroic beamsplitter, RSS-NIR is enclosed in a pre-dewar box operating at -40 °C, and within that is a cryogenic dewar operating at 120 K housing the detector and final camera optics and filters. This semi-warm configuration with compartments at multiple operating temperatures poses a number of design and implementation challenges. In this paper we present overviews of the RSS-NIR instrument design and solutions to design challenges, measured performance of optical components, detector system optimization results, and an update on the overall project status.
机译:罗伯特·斯托比近红外光谱仪(RSS-NIR)是11米南部非洲大型望远镜(SALT)的主要聚焦设施仪器,目前已进入实验室集成和测试阶段。 RSS-NIR最初将在波长为0.9-1.7μm的8 arcmin视场中提供成像以及单对象或多对象中分辨率光谱。未来的模式,包括可调谐的Fabry-Perot光谱成像和极化技术,已经在其中设计,以后可以轻松添加。 RSS-NIR将通过二向色分光镜与现有的可见波长RSS-VIS匹配,从而允许两种仪器在所有模式下同时运行。在10米级望远镜上覆盖0.32-1.7μm波长范围的多目标光谱学是一种罕见的功能,一旦将所有现有的VIS模式整合到NIR中,组合后的RSS将提供完全独特的观测模式。 VIS和NIR仪器共享一个共同的望远镜焦平面,用于光谱模式的狭缝掩模以及在环境观测温度下工作的准直仪光学器件。除二向色分束器外,RSS-NIR还封装在工作于-40°C的杜瓦瓶之前的盒子中,其中还包含一个工作于120 K的低温杜瓦瓶,用于容纳检测器以及最终的相机光学器件和滤光片。具有在多个操作温度下的隔室的这种半热配置带来了许多设计和实施挑战。在本文中,我们概述了RSS-NIR仪器的设计以及解决设计难题,光学组件的测量性能,探测器系统优化结果以及总体项目状态的最新信息的解决方案。

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