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Spartan infrared camera, a high-resolution imager for the SOAR Telescope: Design, tests, and on-telescope performance

机译:Spartan红外摄像机,用于SOAR望远镜的高分辨率成像器:设计,测试和望远镜上的性能

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The Spartan Infrared Camera provides tip-tilt corrected imaging for the SOAR Telescope in the 900-2500 nm spectral range with four 2048 × 2048 HAWAII-2 detectors. The camera has two plate scales: highresolution (40 mas pixel ~(-1)) for future diffraction-limited sampling in the H and K bands and wide-field (66 mas pixel ~(-1)) to cover a 5' × 5' field, over which tip-tilt correction is substantial. The design is described in detail. Except for CaF2 field-flattening lenses, the optics are aluminum mirrors to thermally match the aluminum cryogenic-optical box in which the optics mount. The design minimizes the tilt of the optics as the instrument rotates on the Nasmyth port of the telescope. Two components of the gravitational torque on an optic are eliminated by symmetry, and the third component is minimized by balancing the optic. The optics (including the off-axis aspherical mirrors) were aligned with precise metrology. For the detector assembly, Henein pivots are used to provide frictionless, thermally compliant, lubricant-free, and thermally conducting rotation of the detectors. The heat load is 14 W for an ambient temperature of 10°C. Cooling down takes 40 hr. An activated-charcoal getter controls permeation through the large Viton O-ring for at least nine months.We present maps of the image distortion, which amount to tens of pixels at the greatest. The wavelength of the narrowband filters shift with position in the sky. The measured Strehl ratio of the camera itself is 0.81-0.84 at λ1650 nm. The width of the best K-band image was 260 mas in unexceptional seeing measured after tuning the telescope and before moving the telescope. Since images are normally taken after pointing the telescope to a different field, this supports the idea that the image quality could be improved by better control of the focus and the shape of the primary mirror. The instrument has proved to be capable of producing images that can be stitched together to measure faint, extended features and to produce photometry that agree internally to better than 0.01 mag and are well calibrated to 2MASS stars in the range of 12 < K < 16.
机译:Spartan红外摄像机使用四个2048×2048 HAWAII-2检测器为900-2500 nm光谱范围内的SOAR望远镜提供倾斜校正的成像。该相机具有两个平板刻度:高分辨率(40 mas像素〜(-1)),用于将来在H和K波段进行衍射极限采样;宽视场(66 mas像素〜(-1)),覆盖5'× 5'字段,倾斜倾斜校正非常重要。详细描述该设计。除CaF2场平透镜外,光学器件是铝镜,可与安装光学器件的铝低温光学盒热匹配。当仪器在望远镜的Nasmyth端口上旋转时,该设计可最大程度地减少光学器件的倾斜。光学元件上的重力的两个分量通过对称性消除,而第三分量通过平衡光学元件而被最小化。光学器件(包括离轴非球面镜)与精确的计量学对准。对于探测器组件,Henein枢轴用于提供探测器的无摩擦,热顺性,无润滑剂和导热旋转。在10°C的环境温度下,热负荷为14W。冷却需要40个小时。活性炭吸气剂可控制至少9个月通过大型Viton O形环的渗透。我们提供了图像畸变图,最大变形量为数十个像素。窄带滤光片的波长随天空位置而变化。在λ1650nm处测得的相机本身的Strehl比为0.81-0.84。最佳K波段图像的宽度在调整望远镜后和移动望远镜之前测得的无异常视野为260 mas。由于通常是在将望远镜指向其他视野后拍摄图像,因此可以支持更好地控制焦点和主镜形状来改善图像质量的想法。事实证明,该仪器能够产生可以缝合在一起的图像,以测量微弱的扩展特征,并产生内部可优于0.01 mag的光度学,并且可以很好地校准2MASS恒星,范围在12

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