PDS 70b Shows Stellar-like Carbon-to-oxygen Ratio

Chih-Chun Hsu, Jason J. Wang, 劲飞 王, Geoffrey A. Blake, Jerry W. Xuan, Yapeng Zhang, Jean-Baptiste Ruffio, Katelyn Horstman, Julianne Cronin, Ben Sappey, Yinzi Xin, Luke Finnerty, Daniel Echeverri, Dimitri Mawet, Nemanja Jovanovic, Clarissa R. Do Ó, Ashley Baker, Randall Bartos, Benjamin Calvin, Sylvain Cetre, Jacques-Robert Delorme, Gregory W. Doppmann, Michael P. Fitzgerald, Joshua Liberman, Ronald A. López, Evan Morris, Jacklyn Pezzato-Rovner, Tobias Schofield, Andrew Skemer, J. Kent Wallace, Ji Wang and 吉 王
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Abstract

The ~5 Myr PDS 70 is the only known system with protoplanets residing in the cavity of the circumstellar disk from which they formed, ideal for studying exoplanet formation and evolution within its natal environment. Here, we report the first spin constraint and C/O measurement of PDS 70b from Keck/KPIC high-resolution spectroscopy. We detected CO (3.8σ) and H2O (3.5σ) molecules in the PDS 70b atmosphere via cross correlation, with a combined CO and H2O template detection significance of 4.2σ. Our forward-model fits, using BT-Settl model grids, provide an upper limit for the spin rate of PDS 70b (<29 km s−1). The atmospheric retrievals constrain the PDS 70b C/O ratio to (<0.63 under 95% confidence level) and a metallicity [C/H] of dex, consistent with that of its host star. The following scenarios can explain our measured C/O of PDS 70b in contrast with that of the gas-rich outer disk (for which C/O ≳ 1). First, the bulk composition of PDS 70b might be dominated by dust+ice aggregates rather than disk gas. Another possible explanation is that the disk became carbon enriched after PDS 70b was formed, as predicted in models of disk chemical evolution and as observed in both very low-mass stars and older disk systems with JWST/MIRI. Because PDS 70b continues to accrete and its chemical evolution is not yet complete, more sophisticated modeling of the planet and the disk, and higher-quality observations of PDS 70b (and possibly PDS 70c), are necessary to validate these scenarios.
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PDS 70b显示类似恒星的碳氧比
~5 Myr PDS 70是唯一已知的原行星存在于它们形成的星周盘腔中的系统,是研究系外行星在其出生环境中的形成和演化的理想系统。本文报道了Keck/KPIC高分辨率光谱对PDS 70b的首次自旋约束和C/O测量。通过互相关法对PDS 70b大气中CO (3.8σ)和H2O (3.5σ)分子进行了检测,CO和H2O模板的联合检测显著性为4.2σ。利用BT-Settl模型网格,我们的正演模型拟合提供了PDS 70b自旋速率的上限(<29 km s−1)。大气反演约束了PDS 70b的C/O比值(95%置信水平下<0.63)和金属丰度指数[C/H],与它的主星一致。以下情况可以解释我们测量到的PDS 70b的C/O与富含气体的外盘(C/O≥1)的C/O的对比。首先,PDS 70b的总体组成可能主要是尘埃+冰聚集体,而不是盘内气体。另一种可能的解释是,在PDS 70b形成后,圆盘变得富含碳,正如圆盘化学演化模型所预测的那样,也正如JWST/MIRI在非常低质量的恒星和更老的圆盘系统中所观察到的那样。由于PDS 70b继续吸积,其化学演化尚未完成,因此有必要对行星和盘进行更复杂的建模,并对PDS 70b(可能还有PDS 70c)进行更高质量的观测,以验证这些假设。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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