论文标题

使用过境白色矮人的传输光谱测试基准测试

Benchmark tests of transmission spectroscopy using transiting white dwarfs

论文作者

Jiang, Chengzi, Chen, Guo, Pallé, Enric, Parviainen, Hannu, Murgas, Felipe, Ma, Yuehua

论文摘要

地面的传输观测值受牙尿髓道吸收和仪器系统学的影响。为了解决这些影响,需要更好地了解不同数据分析的影响,以提高检索到的传输光谱的准确性。我们建议使用传播的白色矮人验证地面的低分辨率传输光谱。这里的优势在于,我们事先知道最终的传输频谱应该是什么:一个无特征的扁平光谱。我们分析了两个类似于热木星的过渡白矮人。我们使用各种噪声模型来说明遵循传输光谱分析程序的光谱光曲线中的系统噪声。我们将派生的透射光谱与宽带传输深度进行了比较,以确定是否有任何人工偏移或光谱特征是由光曲线拟合引起的。结果显示出强大的模型依赖性,并且在使用不同的噪声模型,不同的参考恒星和不同的公共模式去除方法计算时,传输光谱会显示出很大的差异。但是,我们仍然可以根据贝叶斯模型比较得出相对准确的传输光谱。借助当前的基于地面的仪器,过境光曲线中的系统学很容易污染传输光谱,引入了一般偏移或一些伪造的光谱特征,从而导致了行星气氛的偏见。因此,有必要通过模型比较来确定结果对所采用噪声模型的依赖性。该模型推断应通过多种观察和不同的工具来检查。 (简略)

Ground-based transit observations are affected by both telluric absorption and instrumental systematics. To account for these effects, a better understanding of the impact of different data analyses is needed to improve the accuracy of the retrieved transmission spectra. We propose validating ground-based low-resolution transmission spectroscopy using transiting white dwarfs. The advantage here is that we know beforehand what the final transmission spectrum should be: a featureless flat spectrum. We analyzed two transiting white dwarfs analogous to hot Jupiters. We used various noise models to account for the systematic noise in their spectroscopic light curves following common procedures of transmission spectroscopy analyses. We compared the derived transmission spectra with the broadband transit depth to determine whether there are any artificial offsets or spectral features arising from light-curve fitting. The results show a strong model dependence, and the transmission spectra exhibit considerable discrepancies when they are computed with different noise models, different reference stars, and different common-mode removal methods. Nonetheless, we can still derive relatively accurate transmission spectra based on a Bayesian model comparison. With current ground-based instrumentation, the systematics in transit light curves can easily contaminate a transmission spectrum, introducing a general offset or some spurious spectral features and thus leading to a biased interpretation on the planetary atmosphere. Therefore, it is necessary to determine the dependence of results on the adopted noise model through model comparison. The model inferences should be examined through multiple observations and different instruments. (Abridged)

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