论文标题

大气分散的天空测量:I。方法验证

On-sky measurements of atmospheric dispersion: I. Method validation

论文作者

Wehbe, B., Cabral, A., Avila, G.

论文摘要

由于大气折射的波长依赖性指数,对地面望远镜的观测受到不同大气分散的影响。大气分散校正器(ADC)的使用是基本弥补这一效果的基础。大气分散校正残差高于〜100毫米秒(MAS)的水平,将影响天文观测,特别是径向速度和通量损失。 ADC的设计基于大气模型。据我们所知,这些模型从未经过Sky的测试。在本文中,我们提出了一种新方法,以测量光学范围内的大气分散体。我们需要比50 MAS更好的精度,该精度等于大气模型之间的差异。该方法基于使用交叉分散光谱仪来确定每个光谱阶的每个波长在空间谱的质心的位置。该方法使用狭缝光谱仪尺寸获取的交叉分散光谱数据进行验证。我们在红色手臂的两个范围内测量蓝色手臂,15个MAS和23 MAS的47 MAS的器乐分散。我们还测量了像素量表的4%偏差与乌维斯手册中引用的值的偏差。该方法的准确性约为315-665 nm的MAS。在此级别上,我们可以比较和表征不同的大气分散模型,以实现更好的未来ADC设计。

Observations with ground-based telescopes are affected by differential atmospheric dispersion due to the wavelength-dependent index of refraction of the atmosphere. The usage of an Atmospheric Dispersion Corrector (ADC) is fundamental to compensate this effect. Atmospheric dispersion correction residuals above the level of ~ 100 milli-arcseconds (mas) will affect astronomical observations, in particular radial velocity and flux losses. The design of an ADC is based on atmospheric models. To the best of our knowledge, those models have never been tested on-sky. In this paper, we present a new method to measure the atmospheric dispersion on-sky in the optical range. We require an accuracy better than 50 mas that is equal to the difference between atmospheric models. The method is based on the use of cross-dispersion spectrographs to determine the position of the centroid of the spatial profile at each wavelength of each spectral order. The method is validated using cross-dispersed spectroscopic data acquired with the slit spectrograph UVES. We measure an instrumental dispersion of 47 mas in the blue arm, 15 mas, and 23 mas in the two ranges of the red arm. We also measure a 4 % deviation in the pixel scale from the value cited in UVES manual. The accuracy of the method is ~ 17 mas in the range of 315-665 nm. At this level, we can compare and characterize different atmospheric dispersion models for better future ADC designs.

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