VUV Fourier transform spectroscopy (with imaging)

A. Thorne
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Abstract

The concepts of VUV FTS and imaging FTS have become somewhat linked by studies of the feasibility of a satellite-borne imaging FTS combining spectral and spatial resolution, primarily for solar physics. In the recent ESA study (SIMURIS) the main target of such an instrument is the chromospheric emission spectrum from the end of the continuum, about 180 nm, to Lyman alpha at 121 nm. Instrumentally, however, the two concepts are almost independent. I shall treat them as such in this paper, but I will conclude it with a brief discussion of the merits of an imaging FTS relative to those of a grating spectrometer equipped with a similar array detector.
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VUV傅立叶变换光谱学(带成像)
由于主要用于太阳物理学的结合光谱和空间分辨率的星载成像傅里叶变换的可行性研究,VUV傅里叶变换和成像傅里叶变换的概念已经在某种程度上联系起来。在最近的ESA研究(SIMURIS)中,这种仪器的主要目标是从连续体的末端(约180 nm)到121 nm的莱曼α的色球发射光谱。然而,在工具上,这两个概念几乎是独立的。我将在本文中这样对待它们,但我将以一个简短的讨论来结束它,相对于配备类似阵列探测器的光栅光谱仪,成像FTS的优点。
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