论文标题
大气的化学多样性和亚核的内部:GJ 436 b的案例研究
Chemical diversity of the atmospheres and interiors of sub-Neptunes: a case study of GJ 436 b
论文作者
论文摘要
预计亚核的大气将表现出相当大的化学多样性,超出了天然气大型系外行星的预期。在当前的研究中,我们构建了自洽的辐射转移和平衡化学模型,以探索这种化学多样性。我们使用GJ 436 B作为案例研究,以进一步研究关节大气 - 间接模型。特别是,我们根据可用的spitzer测量来限制行星内部和大气的特性。虽然可以使用高金属性模型拟合GJ 436 B的发射光谱,但我们证明了这种大气与物理上合理的内部结构不一致。仍然没有现有的研究能够充分适合4.5微米的spitzer次要日食测量,这可能是由于化学不平衡引起的。最后,信息含量分析表明,发射和传输光谱限制了不同波长的碳与氧的比和金属性,但前者不太容易受到高度金属增强气氛而产生的扁平光谱。借助最近发射的JWST,我们建议使用大气和内部结构模型同时对亚新持久行星的发射和传输光谱进行分析。
The atmospheres of sub-Neptunes are expected to exhibit considerable chemical diversity, beyond what is anticipated for gas-giant exoplanets. In the current study, we construct self-consistent radiative transfer and equilibrium chemistry models to explore this chemical diversity. We use GJ 436 b as a case study to further study joint atmosphere-interior models. In particular, we constrain the properties of the interior and atmosphere of the planet based on the available Spitzer measurements. While it is possible to fit the emission spectrum of GJ 436 b using a high-metallicity model, we demonstrate that such an atmosphere is inconsistent with physically plausible interior structures. It remains the case that no existing study can adequately fit the 4.5-micron Spitzer secondary eclipse measurement, which is probably caused by chemical disequilibrium. Finally, an information content analysis reveals that emission and transmission spectra constrain the carbon-to-oxygen ratio and metallicity at different wavelengths, but the former are less susceptible to flat spectra stemming from highly metal-enriched atmospheres. With the recently-launched JWST, we recommend that future analysis of emission and transmission spectra of sub-Neptune planets are carried out self-consistently using both the atmospheric and interior structure models.