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Correcting METIS spectra for telluric absorption to maximize spectralfidelity

机译:校正METIS光谱以吸收碲,以最大化光谱保真度

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METIS is a mid-infrared instrument proposed for the European Extremely Large Telescope (E-ELT). It is designed to provide imaging and spectroscopic capabilities in the 3 - 14μm region up to a spectral resolution of 10~5. One of the novel concepts of METIS is that of a high-resolution integral field spectrograph (IFS) for a diffraction-limited mid-IR instrument. While this concept has many scientific and operational advantages over a long-slit spectrograph, one drawback is that the spectral resolution changes over the field of view. This has an impact on the procedures to correct for telluric absorption lines imprinted on the science spectra. They are a major obstacle in the quest to maximize spectral fidelity, the ability to distinguish a weak spectral feature from the continuum. The classical technique of division by a standard star spectrum, observed in a single IFS spaxel, cannot simply be applied to all spaxels, because the spectral resolution changes from spaxel to spaxel. Here we present and discuss possible techniques of telluric line correction of METIS IFS spectra, including the application of synthetic model spectra of telluric transmission, to maximize spectral fidelity.
机译:METIS是为欧洲超大型望远镜(E-ELT)提出的中红外仪器。它旨在提供3-14μm范围内的成像和光谱功能,光谱分辨率高达10〜5。 METIS的新颖概念之一是用于衍射受限的中红外仪器的高分辨率积分场光谱仪(IFS)。尽管此概念相对于长缝光谱仪具有许多科学和操作优势,但一个缺点是光谱分辨率会随着视野的变化而变化。这对校正印在科学光谱上的碲吸收线的程序有影响。它们是最大程度地寻求频谱保真度的主要障碍,频谱保真度是区分连续谱中较弱光谱特征的能力。在单个IFS Spaxel中观察到的由标准星光谱进行划分的经典技术不能简单地应用于所有Spaxel,因为光谱分辨率会随Spaxel的变化而变化。在这里,我们介绍并讨论METIS IFS光谱的碲线修正的可能技术,包括碲传输的合成模型光谱的应用,以最大限度地提高光谱保真度。

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