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Optical design for an infrared multi-object spectrometer (IRMOS)

机译:红外多目标光谱仪(IRMOS)的光学设计

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The optical design for an Infrared Multiple Object Spectrometer (IRMOS) intended for Astronomical research is presented. To accomplish spectroscopy of multiple objects simultaneous,IRMOS utilizes a Micro-Mirror array (MMA) as an electronically controlled slit device. This approach makes object selection simple and offers great versatility for performing spectral analysis on many objects within a field location. Furthermore, it alows a field location to be imaged without spectra prior to object selection. The optical design of IRMOS has two distinct stages. The first stage reduces an f/15 incoming beam to f/4.6, with a tilted focal plane located at the MMA (the MMA removes some of the tilt of the focal lane, since the micro-mirrors tilt individually). The second stage consists of the spectrometer, capable of resolutions of 300, 1000, and 3000 in the astronomical J,H and K bands. This stage transforms the tilted focal plane into a collimated pupil on a grating, and then re-images onto a HAWAII detector. When used with the Kitt Peak National Observatory 4 meter telescope, a plate scale of approx 0.2 arcseconds per pixel is realized at both the MMA and the detector. A total of 6 mirrors are used, two flat fold mirrors, two off-axis concave aspheres, one off-axis convex asphere, and one off=axis concave biconic mirror. The selection of a biconic surface in this design helped reduce the overall size of the instrument by reducing the size and number of necessary mirrors, simplifying alignment.
机译:介绍了用于天文研究的红外多体对象光谱仪(IRMOS)的光学设计。为了同时实现多个物体的光谱学,IRMOS利用微镜阵列(MMA)作为电子控制的狭缝装置。这种方法使对象选择简单,并为在现场位置内的许多对象上执行频谱分析提供了极大的多功能性。此外,它在对象选择之前没有光谱成像的场位置。 IRMOS的光学设计有两个不同的阶段。第一阶段将F / 15进入光束减小到F / 4.6,具有位于MMA的倾斜焦平面(MMA去除焦线路的一些倾斜,因为微镜分别倾斜)。第二阶段由光谱仪组成,能够在天文J,H和K条带中分辨率为300,000和3000。该阶段将倾斜的焦平面转换为在光栅上的准直的光亮中,然后将图像重新图像上的夏威夷检测器。当与KITT峰国家观察台4米望远镜一起使用时,在MMA和检测器中实现了每像素的大约0.2个弧形秒的板量程。使用共6镜,两个扁平折叠镜,两个偏离轴凹面,一个偏离轴凸的非球,以及一个OFF =轴凹面镜。在该设计中选择的双面表面通过减少必要镜子的尺寸和数量,帮助减少仪器的整体尺寸,简化对准。

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