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首页> 外文期刊>Publications of the Astronomical Society of the Pacific >Temporal Variations of Telluric Water Vapor Absorption at Apache Point Observatory
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Temporal Variations of Telluric Water Vapor Absorption at Apache Point Observatory

机译:Apache Point天文台碲蒸汽吸收的时间变化

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Time-variable absorption by water vapor in Earth's atmosphere presents an important source of systematic error for a wide range of ground-based astronomical measurements, particularly at near-infrared wavelengths. We present results from the first study on the temporal and spatial variability of water vapor absorption at Apache Point Observatory (APO). We analyze similar to 400,000 high-resolution, near-infrared (H-band) spectra of hot stars collected as calibration data for the APO Galactic Evolution Experiment (APOGEE) survey. We fit for the optical depths of telluric water vapor absorption features in APOGEE spectra and convert these optical depths to Precipitable Water Vapor (PWV) using contemporaneous data from a GPS-based PWV monitoring station at APO. Based on simultaneous measurements obtained over a 3 degrees field of view, we estimate that our PWV measurement precision is +/- 0.11 mm. We explore the statistics of PWV variations over a range of timescales from less than an hour to days. We find that the amplitude of PWV variations within an hour is less than 1 mm for most (96.5%) APOGEE field visits. By considering APOGEE observations that are close in time but separated by large distances on the sky, we find that PWV is homogeneous across the sky at a given epoch, with 90% of measurements taken up to 70 degrees apart within 1.5 hr having Delta PWV < 1.0 mm. Our results can be used to help simulate the impact of water vapor absorption on upcoming surveys at continental observing sites like APO, and also to help plan for simultaneous water vapor metrology that may be carried out in support of upcoming photometric and spectroscopic surveys.
机译:地球大气中的水蒸气的时间变量吸收是各种基于地面的天文测量的系统误差的重要来源,特别是在近红外波长。我们提出了第一次研究athache点观测台(APO)的水蒸气吸收的时间和空间变异的研究结果。我们分析与400,000的高分辨率,近红外(H-BAND)光谱的热恒星收集为APO Galactic Evolutive实验(Apogee)调查的校准数据。我们适用于ApoGee光谱中的碲水蒸气吸收特征的光学深度,并将这些光学深度转换为使用来自APO的基于GPS的PWV监测站的同期数据来降低水蒸气(PWV)。基于通过3度的同时测量,我们估计我们的PWV测量精度是+/- 0.11mm。我们探讨了从不到一小时到几天的时间尺度范围内PWV变化的统计数据。我们发现大多数(96.5%)的PWV变化在一小时内的幅度较少(96.5%)。通过考虑靠近时间但在天空上的大距离分开的近距离观察,我们发现PWV在给定时期的天空中均匀,90%的测量在1.5小时内具有ΔPWV的1.5小时内占70度。 1.0毫米。我们的结果可用于帮助模拟水蒸气吸收对欧洲大陆观测位点的调查的影响,也可以帮助计划同时进行水蒸气计量,以支持即将到来的光度和光谱调查。

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