论文标题
为什么在这里如此冷?
Why is it so Cold in Here?: Explaining the Cold Temperatures Retrieved from Transmission Spectra of Exoplanet Atmospheres
论文作者
论文摘要
传输光谱是一种广泛用于探测系外行星终结器的强大技术。传播光谱的大气检索正在实现外部大气的比较研究。但是,检索技术推断出的大气特性表现出明显的异常:大多数检索温度远低于预期。在某些情况下,检索到的温度比T_EQ冷约1000 k。在这里,我们为这个难题提供了一个解释。我们证明,当将1D大气模型应用于具有不同早晨终止剂组成的行星光谱时,会产生错误的冷温。尽管提供了可接受的拟合度,但1D检索技术仍可以人工调整大气参数,从终结者平均特性远离。检索到的温度曲线比现实较低数百度,温度梯度较弱。检索到的丰度大多偏向> 1 $σ$,有时> 3 $σ$,对于超热木星而言最极端的偏见。当早晨覆盖的成分差异显示出突出的不透明度来源时,h $ _2 $ o o o的丰度是1D模型检索的丰度,可能会因数量级而偏置。最后,我们证明了这些偏见为WASP-17B和WASP-12B报告的冷温度提供了解释。为了克服与一维大气模型相关的偏见,迫切需要开发多维检索技术。
Transmission spectroscopy is a powerful technique widely used to probe exoplanet terminators. Atmospheric retrievals of transmission spectra are enabling comparative studies of exoplanet atmospheres. However, the atmospheric properties inferred by retrieval techniques display a significant anomaly: most retrieved temperatures are far colder than expected. In some cases, retrieved temperatures are ~1000 K colder than T_eq. Here, we provide an explanation for this conundrum. We demonstrate that erroneously cold temperatures result when 1D atmospheric models are applied to spectra of planets with differing morning-evening terminator compositions. Despite providing an acceptable fit, 1D retrieval techniques artificially tune atmospheric parameters away from terminator-averaged properties. Retrieved temperature profiles are hundreds of degrees cooler and have weaker temperature gradients than reality. Retrieved abundances are mostly biased by > 1$σ$ and sometimes by > 3$σ$, with the most extreme biases for ultra-hot Jupiters. When morning-evening compositional differences manifest for prominent opacity sources, H$_2$O abundances retrieved by 1D models can be biased by over an order of magnitude. Finally, we demonstrate that these biases provide an explanation for the cold retrieved temperatures reported for WASP-17b and WASP-12b. To overcome biases associated with 1D atmospheric models, there is an urgent need to develop multidimensional retrieval techniques.