首页> 外文期刊>Astronomy and astrophysics >Effects of a fully 3D atmospheric structure on exoplanet transmission spectra: retrieval biases due to day–night temperature gradients
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Effects of a fully 3D atmospheric structure on exoplanet transmission spectra: retrieval biases due to day–night temperature gradients

机译:完整的3D大气结构对系外行星透射谱的影响:昼夜温度梯度导致的取回偏差

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Transmission spectroscopy provides us with information on the atmospheric properties at the limb, which is often intuitively assumed to be a narrow annulus around the planet. Consequently, studies have focused on the effect of atmospheric horizontal heterogeneities along the limb. Here we demonstrate that the region probed in transmission – the limb – actually extends significantly towards the day and night sides of the planet. We show that the strong day–night thermal and compositional gradients expected on synchronous exoplanets create sufficient heterogeneities across the limb that result in important systematic effects on the spectrum and bias its interpretation. To quantify these effects, we developed a 3D radiative-transfer model able to generate transmission spectra of atmospheres based on 3D atmospheric structures. We first apply this tool to a simulation of the atmosphere of GJ 1214 b to produce synthetic JWST observations and show that producing a spectrum using only atmospheric columns at the terminator results in errors greater than expected noise. This demonstrates the necessity for a real 3D approach to model data for such precise observatories. Secondly, we investigate how day–night temperature gradients cause a systematic bias in retrieval analysis performed with 1D forward models. For that purpose we synthesise a large set of forward spectra for prototypical HD 209458 b- and GJ 1214 b-type planets varying the temperatures of the day and night sides as well as the width of the transition region. We then perform typical retrieval analyses and compare the retrieved parameters to the ground truth of the input model. This study reveals systematic biases on the retrieved temperature (found to be higher than the terminator temperature) and abundances. This is due to the fact that the hotter dayside is more extended vertically and screens the nightside – a result of the non-linear properties of atmospheric transmission. These biases will be difficult to detect as the 1D profiles used in the retrieval procedure are found to provide an excellent match to the observed spectra based on standard fitting criteria. This must be kept in mind when interpreting current and future data.
机译:透射光谱学为我们提供了肢体大气特性的信息,通常直觉上认为这是行星周围的狭窄环空。因此,研究集中于沿肢体的大气水平异质性的影响。在这里,我们证明了探测传播的区域-肢体-实际上显着延伸到了行星的白天和黑夜。我们表明,同步系外行星上预期的昼夜强热和成分梯度会在四肢上产生足够的异质性,从而对光谱产生重要的系统影响并偏向其解释。为了量化这些影响,我们开发了3D辐射传递模型,该模型能够基于3D大气结构生成大气的透射光谱。我们首先将此工具应用于GJ 1214b大气的模拟,以产生合成的JWST观测结果,并表明仅在终止器处使用大气列来产生光谱会导致误差大于预期的噪声。这证明了使用真正的3D方法对此类精确天文台的数据进行建模的必要性。其次,我们研究昼夜温度梯度如何在使用一维正向模型进行的检索分析中引起系统性偏差。为此,我们为原型HD 209458 b型和GJ 1214 b型行星合成了大量前向光谱,这些行星会改变白天和夜晚的温度以及过渡区域的宽度。然后,我们执行典型的检索分析,并将检索到的参数与输入模型的基本事实进行比较。这项研究揭示了对回收温度(发现高于终止子温度)和丰度的系统偏差。这是由于这样的事实,较热的白天在垂直方向上延伸得更多,并且遮盖了夜晚,这是大气传输的非线性特性的结果。这些偏差将难以检测,因为在检索过程中使用的1D轮廓被发现可以根据标准拟合标准与观察到的光谱提供极好的匹配。在解释当前和将来的数据时必须牢记这一点。

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