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THE MID-INFRARED SPECTRUM OF THE TRANSITING EXOPLANET HD 209458b

机译:过渡EXOPLANET HD 209458b的中红外光谱

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摘要

We report the spectroscopic detection of mid-infrared emission from the transiting exoplanet HD 209458b. Using archive data taken with the Spitzer IRS instrument, we have determined the spectrum of HD 209458b between 7.46 and 15.25 μm. We have used two independent methods to determine the planet spectrum, one differential in wavelength and one absolute, and find the results are in good agreement. Over much of this spectral range, the planet spectrum is consistent with featureless thermal emission. Between 7.5 and 8.5 μm, we find evidence for an unidentified spectral feature. If this spectral modulation is due to absorption, it implies that the dayside vertical temperature profile of the planetary atmosphere is not entirely isothermal. Using the IRS data, we have determined the broadband eclipse depth to be 0.00315 ± 0.000315, implying significant redistribution of heat from the dayside to the nightside. This work required the development of improved methods for Spitzer IRS data calibration that increase the achievable absolute calibration precision and dynamic range for observations of bright point sources.
机译:我们报告了从光谱中的系外行星HD 209458b探测中红外发射的光谱。使用Spitzer IRS仪器获得的存档数据,我们确定了HD 209458b的光谱在7.46和15.25μm之间。我们使用了两种独立的方法来确定行星光谱,一种是波长上的差异,另一种是绝对值,并且发现结果吻合良好。在大部分光谱范围内,行星光谱与无特征的热辐射一致。在7.5至8.5μm之间,我们发现了光谱特征不明的证据。如果这种光谱调制是由于吸收引起的,则意味着行星大气的白天垂直温度分布并不完全等温。使用IRS数据,我们确定日食的宽带深度为0.00315±0.000315,这意味着热量从白天到晚上都有明显的重新分布。这项工作需要开发用于Spitzer IRS数据校准的改进方法,以提高可达到的绝对校准精度和动态范围,以用于观察亮点源。

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