论文标题

在三个亚北极分球星的高层大气中未检测氦气

Non-detection of Helium in the Upper Atmospheres of Three Sub-Neptune Exoplanets

论文作者

Kasper, David, Bean, Jacob L., Oklopčić, Antonija, Malsky, Isaac, Kempton, Eliza M. -R., Désert, Jean-Michel, Rogers, Leslie A., Mansfield, Megan

论文摘要

我们提出了在三个亚新尺寸行星的高层大气中寻找氦气,以研究这些无处不在的物体的起源。低密度行星的氦气检测将是有力的证据表明,在岩石行星的次要大气中,预计不会有大量的氦气从原球星星云中积聚。我们使用Keck+NIRSPEC获得了行星GJ1214B,GJ9827D和HD97658B的高分辨率过境光谱,围绕10,833 ANG HE TRIPLET特征。尽管达到了高度的敏感性,但我们仍未检测到任何行星的氦吸收。我们通过将1D模型的网格与数据进行比较,我们使用非检测来对行星热圈温度和大气损失率进行设置限制。我们还进行了耦合的内部结构和大气损失计算,这表明行星的散装大气(风)相对于其原始组成,氦气最多将是适度的增强(耗尽)。我们缺乏对GJ1214B和GJ9827D的氦三重态的检测,这与这些行星当今质量损失的模型的预测极为不一致。需要更高的信噪数据来检测预测HD97658B的氦气功能。我们确定宿主恒星的EUV通量中的不确定性以及缺乏专门用于凉爽和金属增强气氛的详细质量损失模型,这是对我们结果解释的主要局限性。最终,我们的结果表明,亚新持久行星的上层大气与天然气巨星的大气层不同。

We present a search for helium in the upper atmospheres of three sub-Neptune size planets to investigate the origins of these ubiquitous objects. The detection of helium for a low density planet would be strong evidence for the presence of a primary atmosphere accreted from the protoplanetary nebula because large amounts of helium are not expected in the secondary atmospheres of rocky planets. We used Keck+NIRSPEC to obtain high-resolution transit spectroscopy of the planets GJ1214b, GJ9827d, and HD97658b around the 10,833 Ang He triplet feature. We did not detect helium absorption for any of the planets despite achieving a high level of sensitivity. We used the non-detections to set limits on the planets' thermosphere temperatures and atmospheric loss rates by comparing grids of 1D models to the data. We also performed coupled interior structure and atmospheric loss calculations, which suggest that the bulk atmospheres (winds) of the planets would be at most modestly enhanced (depleted) in helium relative to their primordial composition. Our lack of detections of the helium triplet for GJ1214b and GJ9827d are highly inconsistent with the predictions of models for the present day mass loss on these planets. Higher signal-to-noise data would be needed to detect the helium feature predicted for HD97658b. We identify uncertainties in the EUV fluxes of the host stars and the lack of detailed mass loss models specifically for cool and metal-enhanced atmospheres as the main limitations to the interpretation of our results. Ultimately, our results suggest that the upper atmospheres of sub-Neptune planets are fundamentally different than those of gas giant planets.

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