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Mimir: A near-infrared wide-field imager, spectrometer, and polarimeter

机译:Mimir:近红外宽视场成像仪,光谱仪和旋光仪

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摘要

Mimir, a new facility-class near-infrared instrument for the 1.8 m Perkins telescope on Anderson Mesa outside Flagstaff, Arizona, was commissioned and has been operating for three years. Mimir is multifunction, performing wide-field (F/5) and narrow-field (F/17) imaging, long-slit spectroscopy, and imaging polarimetry. The F/5 mode images at 0.59" per pixel onto the 1024 x 1024 pixel ALADDIN III InSb array detector, giving a 10' x 10'field of view. In the F/17 mode, the plate scale is 0.18" per pixel. Optically, Mimir is a refractive reimager for the F/17.5 Perkins beam. A six-lens collimator produces an achromatic 25 mm pupil, which is imaged by a five-lens camera (F/5), a four-lens camera (F/17), or a two-lens pupil viewer onto the detector. Three filter wheels precede the pupil, one follows the pupil. The wheels contain a rotating half-wave plate, broadband filters, narrowband filters, grisms, long-pass filters, a wire grid, and thermal IR blockers. The first telescope focus is within Mimir, where a slit and decker unit, consisting of two linear motion cars, selects one of 13 slit scenes. The slit and decker cars, the four filter wheels, the half-wave plate rotation, and the camera selector are all driven by stepper motors within the cold vacuum space. Cooling is provided by a CTI 1050 two-stage, closed-cycle helium refrigerator, keeping the optics, filters, and internal surfaces between 65 and 75 K and the detector at 33.5 K. Switching between Mimir's different modes takes only a few seconds, making it a versatile tool for conducting a wide range of investigations and for quickly reacting to changing observing conditions. Mimir on the Perkins telescope achieves imaging sensitivities 2-4 mag deeper than 2MASS, moderate resolution (R similar to 700) JHK spectra of virtually any 2MASS source, high-precision wide-field imaging polarimetry, and L' and AT band imaging and spectroscopy.
机译:Mimir是位于亚利桑那州弗拉格斯塔夫郊外安德森·梅萨(Anderson Mesa)上用于1.8 m珀金斯望远镜的新型设施级近红外仪器,已投入使用,已经运行了三年。 Mimir是多功能的,可以执行宽视场(F / 5)和窄视场(F / 17)成像,长缝光谱法和成像极化仪。 F / 5模式以每像素0.59“的图像成像到1024 x 1024像素的ALADDIN III InSb阵列检测器上,提供了10'x 10'的视野。在F / 17模式下,印版比例为每像素0.18”。从光学上讲,Mimir是F / 17.5 Perkins光束的折射再成像器。六透镜准直仪会产生一个25毫米消色差瞳孔,该瞳孔由五透镜相机(F / 5),四透镜相机(F / 17)或两透镜瞳孔观察器成像到探测器上。三个滤镜轮在瞳孔之前,一个在瞳孔之后。轮子包含一个旋转的半波片,宽带滤波器,窄带滤波器,光栅,长通滤波器,线栅和热红外阻挡器。望远镜的第一个焦点位于密米尔(Mimir),由两辆直线运动汽车组成的狭缝和铺放装置从13个狭缝场景中选择一个。狭缝车和双层车,四个滤镜轮,半波片旋转和摄像机选择器均由步进电机在寒冷的真空空间内驱动。 CTI 1050两级闭环氦气制冷器提供冷却,将光学器件,滤光片和65至75 K之间的内表面和检测器的内表面保持在33.5K。在Mimir的不同模式之间切换仅需几秒钟,因此它是一种多功能工具,可用于进行广泛的调查并快速响应不断变化的观测条件。珀金斯望远镜上的Mimir成像灵敏度比2MASS高2-4磁,几乎任何2MASS光源均具有中等分辨率(R类似于700)JHK光谱,高精度宽视场成像极化仪以及L'和AT波段成像和光谱仪。

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