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MegaMIR: A Fizeau Thermal Infrared Camera for the LBTI

机译:Megamir:LBTI的一只海外热红外相机

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The Megapixel Mid-infrared Instrument (MegaMIR) is a proposed Fizeau-mode camera for the Large Binocular Telescope operating at wavelengths between 5 and 28 μm. The camera will be used in conjunction with the Large Binocular Telescope Interferometer (LBTT), a cryogenic optical system that combines the beams from twin 8.4-m telescopes in a phase coherent manner. Unlike other interferometric systems, the co-mounted telescopes on the LBT satisfy the sine condition, providing diffraction-limited resolution over the 40" field of view of the camera. With a 22.8-m baseline, MegaMIR will yield 0.1" angular resolution, making it the highest resolution wide field imager in the thermal infrared for at least the next decade. MegaMIR will utilize a newly developed 1024 x 1024 pixel Si:As detector array that has been optimized for use at high backgrounds. This new detector is a derivative of the Wide-field Infrared Survey Explorer (WISE) low-background detector. The combination of high angular resolution and wide field imaging will be a unique scientific capability for astronomy. Key benefits will be realized in planetary science, galactic, and extra-galactic astronomy. High angular resolution is essential to disentangle highly complex sources, particularly in star formation regions and external galaxies, and MegaMIR provides this performance over a full field of view. Because of the great impact being made by space observatories like the Spitzer Space Telescope, the number of available targets for study has greatly increased in recent years, and MegaMIR will allow efficient follow up science.
机译:Megapixel中红外仪器(Megamir)是一个提出的Fizeau模式摄像头,用于在5到28μm的波长下运行的大双目望远镜。相机将与大双目望远镜干涉仪(LBTT)一起使用,这是一种低温光学系统,该光学系统将来自双扳手的光束以相位相干方式结合。与其他干涉系统不同,LBT上的共同安装望远镜满足正弦状况,在相机的40“视野下提供衍射限制分辨率。使用22.8米基线,梅戈尔将产生0.1英寸的角度分辨率,制作它至少是未来十年的热红外线中的最高分辨率宽野成像仪。 Megamir将利用新开发的1024 x 1024像素SI:作为已经在高背景下使用的检测器阵列。这个新探测器是广场红外测量探险员(WISE)低背景探测器的衍生物。高角度分辨率和宽场成像的组合将是天文学的独特科学能力。在行星科学,银河系和额外的天文学中实现重点福利。高角度分辨率对于解散高度复杂的来源至关重要,特别是在星形成区域和外部星系中,梅戈尔通过完整的视野提供了这种性能。由于Spitzzer Space望远镜等空间观测者所做的巨大影响,近年来,学习的可用目标的数量大大增加,梅戈尔将允许有效的跟进科学。

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