论文标题

关于地面和空间数据的兼容性:WASP-96 B,一个示例

On The Compatibility of Ground-based and Space-based Data: WASP-96 b, An Example

论文作者

Yip, Kai Hou, Changeat, Quentin, Edwards, Billy, Morvan, Mario, Chubb, Katy L., Tsiaras, Angelos, Waldmann, Ingo P., Tinetti, Giovanna

论文摘要

对球星大气的研究依赖于检测不同波长处的过境深度的微小变化。迄今为止,已经使用了许多基于空间的仪器来获得不同光谱带中系外行星的传输光谱。一种常见的做法是结合不同工具的观测值,以实现更广泛的波长覆盖率。我们在这里提出了WASP-96 B的两个不一致的观察结果,一个是Hubble Space望远镜(HST),另一个由非常大的望远镜(VLT)观察到。我们在调查中提出了两个关键发现:1。)通过HST WFC3观测值检测到强烈的水特征。 2.)当将基于地面和空间的观测值合并在一起时,可以看到过境深度(> 1100 ppm)的显着偏移。差异提出了一个问题,即是否确实可以将不同工具的观察结果结合在一起。我们试图通过在我们的检索研究中加入一个附加参数来调整观察值,但无法确定确定对齐的观察结果确实兼容。 WASP-96 B信号的案例不应假定仪器的兼容性。尽管仪器之间的波长重叠可以有所帮助,但应注意,将数据集组合仍然是一个冒险的业务。结合观测的困难也加强了对光谱覆盖率更广泛的下一代仪器的需求。

The study of exoplanetary atmospheres relies on detecting minute changes in the transit depth at different wavelengths. To date, a number of ground and space based instruments have been used to obtain transmission spectra of exoplanets in different spectral band. One common practice is to combine observations from different instruments in order to achieve a broader wavelength coverage. We present here two inconsistent observations of WASP-96 b, one by Hubble Space Telescope (HST) and the other by the Very Large Telescope (VLT). We present two key findings in our investigation: 1.) a strong water signature is detected via the HST WFC3 observations. 2.) A notable offset in transit depth (> 1100 ppm) can be seen when the ground-based and space-based observations are combined together. The discrepancy raises the question of whether observations from different instruments could indeed be combined together. We attempt to align the observations by including an additional parameter in our retrieval studies but are unable to definitively ascertain that the aligned observations are indeed compatible. The case of WASP-96 b signals that compatibility of instruments should not be assumed. While wavelength overlaps between instruments can help, it should be noted that combining datasets remains a risky business. The difficulty in combining observations also strengthens the need for next generation instruments which will possess broader spectral coverage.

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