论文标题

髋关节41378 F的第一个近红外传输光谱,这是一个低质量的温带jovian世界中的多个星光系统

The First Near-Infrared Transmission Spectrum of HIP 41378 f, a Low-Mass Temperate Jovian World in a Multi-Planet System

论文作者

Alam, Munazza K., Kirk, James, Dressing, Courtney D., Lopez-Morales, Mercedes, Ohno, Kazumasa, Gao, Peter, Akinsanmi, Babatunde, Santerne, Alexandre, Grouffal, Salome, Adibekyan, Vardan, Barros, Susana C. C., Buchhave, Lars A., Crossfield, Ian J. M., Dai, Fei, Deleuil, Magali, Giacalone, Steven, Lillo-Box, Jorge, Marley, Mark, Mayo, Andrew W., Mortier, Annelies, Santos, Nuno C., Sousa, Sergio G., Turtelboom, Emma V., Wheatley, Peter J., Vanderburg, Andrew M.

论文摘要

我们提供了长期(p = 542天)的近红外传输频谱,温带($ t_ {eq} $ = 294 K)巨型行星髋关节hip 41378 F使用宽场摄像头3(WFC3)仪器在Hubble Space望远镜(HST)上获得。测得的质量为12 $ \ pm $ 3 $ m _ {\ oplus} $,半径为9.2 $ \ pm $ 0.1 $ r _ {\ oplus} $,hip 41378 f具有极低的散装密度(0.09 $ \ pm $ 0.09 $ \ pm $ 0.02 g/cm $ $ $ $^{3} $)。我们在30个分光光度计通道中以均匀尺寸的宽度为0.018微米的30个分光光度计通道中的中位精度为84 ppm的中位数。在这个精度的水平中,光谱没有显示出1.1-1.7微米之间的气态分子特征吸收的迹象。将观察到的传输光谱与一套1D辐射辐射感染性 - 心理平衡 - 向前模型的套件进行比较,我们排除了清晰的,低的金属气氛,并发现数据更喜欢高金属气氛或具有额外不透明度的源,例如高含量危险和/或或或/或绕过范围。我们通过共同拟合K2和HST光曲线来限制假定环的特性,从而进一步探索该行星的环形场景。我们还评估了与JWST在更长的波长下区分朦胧,环和高金属性场景的可能性。 HIP 41378 F提供了难得的机会,可以探究横跨太阳系巨头,直接成像的行星以及传统上通过过境光谱研究的高度辐射的热木星之间的差距,直接成像的巨大行星的大气组成。

We present a near-infrared transmission spectrum of the long period (P=542 days), temperate ($T_{eq}$=294 K) giant planet HIP 41378 f obtained with the Wide-Field Camera 3 (WFC3) instrument aboard the Hubble Space Telescope (HST). With a measured mass of 12 $\pm$ 3 $M_{\oplus}$ and a radius of 9.2 $\pm$ 0.1 $R_{\oplus}$, HIP 41378 f has an extremely low bulk density (0.09 $\pm$ 0.02 g/cm$^{3}$). We measure the transit depth with a median precision of 84 ppm in 30 spectrophotometric channels with uniformly-sized widths of 0.018 microns. Within this level of precision, the spectrum shows no evidence of absorption from gaseous molecular features between 1.1-1.7 microns. Comparing the observed transmission spectrum to a suite of 1D radiative-convective-thermochemical-equilibrium forward models, we rule out clear, low-metallicity atmospheres and find that the data prefer high-metallicity atmospheres or models with an additional opacity source such as high-altitude hazes and/or circumplanetary rings. We explore the ringed scenario for this planet further by jointly fitting the K2 and HST light curves to constrain the properties of putative rings. We also assess the possibility of distinguishing between hazy, ringed, and high-metallicity scenarios at longer wavelengths with JWST. HIP 41378 f provides a rare opportunity to probe the atmospheric composition of a cool giant planet spanning the gap between the Solar System giants, directly imaged planets, and the highly-irradiated hot Jupiters traditionally studied via transit spectroscopy.

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