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Synthesising, using, and correcting for telluric features in high-resolution astronomical spectra - A near-infrared case study using CRIRES

机译:合成,使用和校正高分辨率天文光谱中的碲特征-使用CRIRES的近红外案例研究

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We present a technique to synthesise telluric absorption and emission features both for in-situ wavelength calibration and for their removal from astronomical spectra. While the presented technique is applicable for a wide variety of optical and infrared spectra, we concentrate in this paper on selected high-resolution near-infrared spectra obtained with the CRIRES spectrograph to demonstrate its performance and limitation. We find that synthetic spectra reproduce telluric absorption features to about 2%, even close to saturated line cores. Thus, synthetic telluric spectra could be used to replace the observation of telluric standard stars, saving valuable observing time. This technique also provides a precise in-situ wavelength calibration, especially useful for high-resolution near-infrared spectra in the absence of other calibration sources.
机译:我们提出了一种合成碲吸收和发射特征的技术,用于原位波长校准及其从天文光谱中去除。尽管提出的技术适用于各种光学和红外光谱,但我们还是将本文集中在使用CRIRES光谱仪获得的高分辨率高分辨率近红外光谱上,以证明其性能和局限性。我们发现,合成光谱将碲吸收特征重现到大约2%,甚至接近饱和线芯。因此,合成碲光谱可以用来代替碲标准星的观测,从而节省了宝贵的观测时间。该技术还提供了精确的原位波长校准,特别适用于在没有其他校准源的情况下的高分辨率近红外光谱。

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