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The JWST MIRI Double-Prism, Design and Science Drivers

机译:JWST MIRI双棱镜,设计和科学驱动程序

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We present how it is achieved to mount a double prism in the filter wheel of MIRIM - the imager of JWST's Mid Infrared Instrument. In order to cope with the extreme conditions of the prisms' surroundings, the low resolution double prism assembly (LRSDPA) design makes high demands on manufacturing accuracy. The design and the manufacturing of the mechanical parts are presented here, while 'Manufacturing and verification of ZnS and Ge prisms for the JWST MIRI imager' are described in a second paper. We also give insights on the astronomical possibilities of a sensitive MIR spectrometer. Low resolution prism spectroscopy in the wavelength range from 5-10 microns will allow to spectroscopically determine redshifts of objects close to/at the re-ionization phase of the universe.
机译:我们将介绍如何在MIRIM的滤光片轮上安装双棱镜的方法-MIW是JWST的中红外仪器的成像仪。为了应对棱镜周围的极端条件,低分辨率双棱镜组件(LRSDPA)设计对制造精度提出了很高的要求。本文介绍了机械零件的设计和制造,而在第二篇论文中介绍了“用于JWST MIRI成像仪的ZnS和Ge棱镜的制造和验证”。我们还提供了有关灵敏MIR光谱仪的天文可能性的见解。在5-10微米波长范围内的低分辨率棱镜光谱学将使人们能够通过光谱学确定接近/处于宇宙再电离阶段的物体的红移。

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