逃逸的氦和高度静音的光谱表明,在海王星下的gj3090b上有一个富含金属的大气

Eva-Maria Ahrer, Michael Radica, Caroline Piaulet-Ghorayeb, Eshan Raul, Lindsey Wiser, Luis Welbanks, Lorena Acuña, Romain Allart, Louis-Philippe Coulombe, Amy Louca, Ryan MacDonald, Morgan Saidel, Thomas M. Evans-Soma, Björn Benneke, Duncan Christie, Thomas G. Beatty, Charles Cadieux, Ryan Cloutier, René Doyon, Jonathan J. Fortney, Anna Gagnebin, Cyril Gapp, Hamish Innes, Heather A. Knutson, Thaddeus Komacek, Joshua Krissansen-Totton, Yamila Miguel, Raymond Pierrehumbert, Pierre-Alexis Roy and Hilke E. Schlichting
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引用次数: 0

摘要

亚海王星,最常见的行星类型,仍然知之甚少。它们的大气应该是多种多样的,但它们的成分很难确定,即使是用JWST。在这里,我们提出了对温暖的亚海王星GJ 3090 b (2.13 R⊕,Teq,A = 0.3 ~ 700 K)的第一个JWST光谱研究,它围绕一颗M2V恒星运行,使其成为大气表征的有利目标。我们使用JWST NIRISS/SOSS和NIRSpec/G395H观测了GJ 3090b的四次凌日,分别观测了两次,波长覆盖范围为0.6 ~ 5.2 μm。我们探测到了10833 Å亚稳态氦三重态的特征,其统计显著性为5.5σ,振幅为434±79 ppm,这是JWST首次在亚海王星中探测到这种特征。这一振幅明显小于太阳金属丰度正演模型所预测的,表明富金属大气降低了质量损失率并减弱了氦特征振幅。此外,我们发现恒星污染,以过境光源效应的形式,主导了NIRISS的透射光谱,未遮挡的光斑和光斑性质在两次访问中发生变化,时间间隔约为6个月。对NIRSpec/G395H光谱的免费检索分析发现了高度静音特征和缺乏CH4的初步证据。这些发现最好的解释是高金属丰度大气(在3σ置信度下,云在~ μbar压力下)使用化学一致性检索和自一致性模型网格。需要对GJ 3090b进行进一步观测,以更严格地限制大气丰度,并更深入地了解导致其潜在金属富集的过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Escaping Helium and a Highly Muted Spectrum Suggest a Metal-enriched Atmosphere on Sub-Neptune GJ 3090 b from JWST Transit Spectroscopy
Sub-Neptunes, the most common planet type, remain poorly understood. Their atmospheres are expected to be diverse, but their compositions are challenging to determine, even with JWST. Here, we present the first JWST spectroscopic study of the warm sub-Neptune GJ 3090 b (2.13 R⊕, Teq,A = 0.3 ∼ 700 K), which orbits an M2V star, making it a favorable target for atmosphere characterization. We observed four transits of GJ 3090 b: two each using JWST NIRISS/SOSS and NIRSpec/G395H, yielding wavelength coverage from 0.6 to 5.2 μm. We detect the signature of the 10833 Å metastable helium triplet at a statistical significance of 5.5σ with an amplitude of 434 ± 79 ppm, marking the first such detection in a sub-Neptune with JWST. This amplitude is significantly smaller than predicted by solar-metallicity forward models, suggesting a metal-enriched atmosphere that decreases the mass-loss rate and attenuates the helium feature amplitude. Moreover, we find that stellar contamination, in the form of the transit light source effect, dominates the NIRISS transmission spectra, with unocculted spot and faculae properties varying across the two visits separated in time by approximately 6 months. Free retrieval analyses on the NIRSpec/G395H spectrum find tentative evidence for highly muted features and a lack of CH4. These findings are best explained by a high-metallicity atmosphere (>100× solar at 3σ confidence for clouds at ∼μbar pressures) using chemically consistent retrievals and self-consistent model grids. Further observations of GJ 3090 b are needed for tighter constraints on the atmospheric abundances and to gain a deeper understanding of the processes that led to its potential metal enrichment.
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