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Design and early performance of IGRINS (Immersion Grating Infrared Spectrometer)

机译:IGrins的设计和早期性能(浸入式光栅红外光谱仪)

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The Immersion Grating Infrared Spectrometer (IGRINS) is a compact high-resolution near-infrared cross-dispersed spectrograph whose primary disperser is a silicon immersion grating. IGRINS covers the entire portion of the wavelength range between 1.45 and 2.45μm that is accessible from the ground and does so in a single exposure with a resolving power of 40,000. Individual volume phase holographic (VPH) gratings serve as cross-dispersing elements for separate spectrograph arms covering the H and K bands. On the 2.7m Harlan J. Smith telescope at the McDonald Observatory, the slit size is 1? x 15? and the plate scale is 0.27? pixel-1. The spectrograph employs two 2048 x 2048 pixel Teledyne Scientific & Imaging HAWAII-2RG detectors with SIDECAR ASIC cryogenic controllers. The instrument includes four subsystems; a calibration unit, an input relay optics module, a slit-viewing camera, and nearly identical H and K spectrograph modules. The use of a silicon immersion grating and a compact white pupil design allows the spectrograph collimated beam size to be only 25mm, which permits a moderately sized (0.96m x 0.6m x 0.38m) rectangular cryostat to contain the entire spectrograph. The fabrication and assembly of the optical and mechanical components were completed in 2013. We describe the major design characteristics of the instrument including the system requirements and the technical strategy to meet them. We also present early performance test results obtained from the commissioning runs at the McDonald Observatory.
机译:浸没式光栅红外光谱仪(IGRINS)是一种紧凑的高分辨率近红外交叉分散光谱仪,其初级分散器是硅浸入光栅。 IGrINS覆盖波长范围的整个部分,在1.45和2.45μm之间可从地面接近,并在单一的曝光中进行,具有40,000的分辨率。单个体积相全息(VPH)光栅用作覆盖H和K带的单独光谱臂的交叉分散元件。在麦当劳天文台的2.7M Harlan J. Smith望远镜上,狭缝尺寸为1? x 15?并且板秤为0.27?像素-1。光谱仪采用两个2048 x 2048像素Teledyne Scientific和Imaging Haiaii-2RG探测器,带有Sidecar AsiC低温控制器。该仪器包括四个子系统;校准单元,输入继电器光学模块,狭缝观看摄像机和几乎相同的H和K光谱仪模块。使用硅浸入光栅和紧凑的白色瞳孔设计允许光谱仪准直光束尺寸仅为25mm,这允许中等大小的(0.96m×0.6m×0.38M)矩形低温恒温器,以包含整个光谱仪。光学和机械部件的制造和组装于2013年完成。我们描述了仪器的主要设计特性,包括系统要求和符合其技术策略。我们还提出了从麦当劳天文台的调试运行获得的早期性能测试结果。

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