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Tunable, all-reflective spatial heterodyne spectrometer for broadband spectral line studies in the visible and near-ultraviolet

机译:可调谐全反射空间外差光谱仪,用于可见光和近紫外光中的宽带光谱线研究

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摘要

A spatial heterodyne spectrometer (SHS) is an interferometric device that combines high resolving power and a large input acceptance angle in a compact format suitable for use at small telescope focal planes and spacecraft for observations of faint, angularly extended emission-line sources. The primary limitation of SHS instruments has come from the spatial sampling of their output interference pattern image, which limits their use to a narrow bandpass. We describe the first-light results from a broadband all-reflective SHS that can be mechanically aligned to any heterodyne wavelength from 300 to 700 nm. Such an instrument can be extremely useful for the near simultaneous study of the brightness and line shapes of major atomic and molecular diagnostic emissions from extended astrophysical targets such as comets or planetary atmospheres. We discuss the results of this validation program and the potential improvements that could be used to expand and/or improve the broadband spectral response of the instrument.
机译:空间外差光谱仪(SHS)是一种干涉仪,它以紧凑的形式结合了高分辨力和大输入接受角,适用于小型望远镜焦平面和航天器,用于观察微弱的,成角度扩展的发射线源。 SHS仪器的主要局限性在于其输出干涉图样图像的空间采样,这限制了它们只能用于窄带通。我们描述了宽带全反射SHS的第一光结果,该SHS可以机械对准300至700 nm的任何外差波长。这种仪器对于几乎同时研究来自诸如彗星或行星大气等扩展的天体物理目标的主要原子和分子诊断发射物的亮度和线形非常有用。我们讨论了该验证程序的结果以及可用于扩展和/或改善仪器的宽带频谱响应的潜在改进。

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