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The science calibration challenges of next generation highly multiplexed optical spectroscopy: the case of the Maunakea Spectroscopic Explorer

机译:下一代高度多路复用光谱学的科学校准挑战:Maunakea光谱探险仪的情况

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MSE is an 11.25m telescope with a 1.5sq.deg. field of view. It can simultaneously obtain 3249 spectra at R = 3000 from 360 -1800nm. and 1083 spectra at 7? = 40000 in the optical. The large field of view, large number of targets, as well as the use of more than 4000 optical fibres to transport the light from the focal plane to the spectrographs, means that precise and accurate science calibration is difficult but essential to obtaining the science goals. As a large aperture telescope focusing on the faint Universe, precision sky subtraction and spectrophotornetry are especially important. Here, we discuss the science calibration requirements, and the adopted calibration strategy, including operational features and hardware, that will enable the successful scientific exploitation of the vast MSE dataset.
机译:MSE是一个11.25米的望远镜,1.5sq.deg。视野。它可以同时在360 -1800nm r = 3000获得3249个光谱。和7次1083谱?光学= 40000。大部分视野,大量目标以及使用超过4000个光纤将光从焦平面传送到光谱仪,这意味着精确准确的科学校准是困难的,但获得科学目标是必不可少的。作为专注于微弱宇宙的大孔径望远镜,精密天空减法和分光粒大小尤为重要。在这里,我们讨论了科学校准要求,以及采用的校准策略,包括运营功能和硬件,这将实现庞大的MSE数据集的成功科学开发。

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