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TSPEC4: Near-IR Spectroscopy for the SOAR Telescope

机译:TSPEC4:SOAR望远镜的近红外光谱

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We describe the design and implementation of a fourth version of the TripleSpec near-infrared spectrograph (TSpec4). This version of the instrument was designed for and first implemented on the 4-m Blanco telescope on Cerro Tololo, and subsequently converted for use on the 4-m Southern Astrophysical Research (SOAR) Telescope on Cerro Pachon. Details of the changed opto-mcchanical design and mounting arrangements are discussed. An updated data pipeline provides reduced spectra from the instrument. We describe the required modifications and the performance of both implementations of TSpec4. The move from the Blanco to SOAR required changing from operation at a classical Cassegrain f/8 focus to operation at a Nasmyth f/16 focus. The SOAR mount also employs a rotator and required accommodation to a significantly different back-focal distance inside the instrument. These changes were implemented by modifying the instrument fore-optics which feeds light onto the slit at f/10.6. The spectrograph and slit viewer optics are unchanged. A dichroic reflects infrared light toward the instrument while passing visible light to a SOAR facility guider; this removes the shortest wavelengths from the spectra and in turn required modification of the data reduction pipeline. As the telescopes have similar apertures, the performance of the instrument is similar on both, though on SOAR image quality is somewhat better and details of the instrument's optical properties differ also. Flexure performance differs as well due to the different instrument locations.
机译:我们描述了TripleSpec近红外光谱仪(TSPEC4)的第四个版本的设计和实现。该版本的仪器是为Cerro Tololo上的4 M个Blanco望远镜而设计的,并首先在Cerro Pachon上转换为4米南部的天体物理研究(SOAR)望远镜。讨论了改变的Opto-McChanical设计和安装安排的细节。更新的数据流水线从仪器提供缩小的光谱。我们描述了TSPEC4实现所需的修改和性能。从BLANCO移动到SOAR的移动从经典CASEGRAIN F / 8的操作转换为NAMMYTH F / 16焦点的操作。 SOAR安装座还采用旋转器和所需的住宿,以在仪器内的显着不同的后焦距。通过修改仪器前光学器来实现这些变化,该仪器前光器将光线送到F / 10.6的狭缝上。光谱仪和狭缝观察者光学不变。二色性反映了仪器的红外光,同时将可见光通过可见光的设施指示灯;这消除了来自光谱的最短波长,然后反过来改变数据减少管道。由于望远镜具有相似的孔,因此仪器的性能相似,但在SOAR图像质量方面的稍微更好,并且仪器的光学性质的细节也不同。由于不同的仪器位置,挠度性能也不同。

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