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首页> 外文期刊>Astronomy and astrophysics >Effect of the stellar absorption line centre-to-limb variation on exoplanet transmission spectrum observations
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Effect of the stellar absorption line centre-to-limb variation on exoplanet transmission spectrum observations

机译:恒星吸收线中心 - 肢体对延伸频谱观测结果的影响

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摘要

Transit spectroscopy is one of the most commonly used techniques for exoplanet atmosphere characterisation. This technique has been used to detect ionised and neutral species in exoplanet atmospheres by comparing the observed stellar lines in and out of transit. The centre-to-limb variation (CLV) of the stellar lines across the stellar disk is an important effect for transmission spectroscopy, since it results in a change of stellar line depth when the planet transits different parts of the stellar disk. We reanalysed the transit data of HD 189733b taken with the HARPS spectrograph to study the CLV effect during transit. The transmission light curve of the Na? i D line so obtained shows a clear imprint of the CLV effect. We used a one-dimensional non-LTE stellar spectral model to simulate the CLV effect. After applying the correction, the measurement of the Na? i absorption in the atmosphere of HD 189733b becomes better determined. We compared the CLV effect of HD 189733b to that of HD 209458b. The CLV effects are different for these two benchmark planetary systems and this is attributed to their different stellar effective temperatures and transit impact parameters. We then explored the general CLV effect that occurs during exoplanet transits. Normally, a star with a lower effective temperature exhibits a stronger CLV effect and its CLV feature extends over a relatively broad wavelength range. The transit impact parameter (b) describes the transit trajectory on the stellar disk and thus determines the actual manifestation of the CLV effect. We introduced a b-diagram which describes the behaviour of the CLV effect as the function of different impact parameters. With improving observational precision, a careful modelling and correction of the CLV effect is necessary for exoplanet atmosphere characterisation using transit spectroscopy.
机译:过渡光谱是外产大气表征最常用的技术之一。通过将观察到的恒星线进出交通,该技术已被用于检测外部恒静脉内的电离和中性物质。恒星盘的恒星线的中心到肢体变化(CLV)是对透射光谱的重要效果,因为当行星过渡恒星盘的不同部位时它导致恒星线深度的变化。我们通过竖琴谱仪进行了HD 189733B的传输数据,以研究过境过程中的CLV效应。 NA的传输光曲线?因此,所以获得的线路显示了CLV效应的清晰印记。我们使用了一维非LTE恒星光谱模型来模拟CLV效应。施加校正后,测量NA?我在HD 189733B的气氛中吸收变得更好地确定。我们将HD 189733B的CLV效应与HD 209458B的CLV效应进行了比较。对于这两个基准行星系统,CLV效应不同,这归因于其不同的恒星有效温度和过境冲击参数。然后,我们探讨了在外延运输过程中发生的一般CLV效果。通常,具有较低有效温度的明星表现出更强的CLV效应,并且其CLV特征在相对宽波长范围内延伸。过境冲击参数(b)描述了恒星盘上的过境轨迹,从而决定了CLV效应的实际表现。我们介绍了一个B形图,它描述了CLV效应的行为作为不同影响参数的功能。随着观察精度提高,使用过渡光谱,仔细的模型和CLV效应的校正是外部气氛特征所必需的。

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