论文标题

JWST-NIRSPEC传输光谱的信息内容

Information content of JWST-NIRSPEC transmission spectra of warm Neptunes

论文作者

Guzmán-Mesa, Andrea, Kitzmann, Daniel, Fisher, Chloe, Burgasser, Adam J., Hoeijmakers, H. Jens, Márquez-Neila, Pablo, Grimm, Simon L., Mandell, Avi M., Sznitman, Raphael, Heng, Kevin

论文摘要

温暖的海王星为理解大气化学提供了丰富的机会。随着即将到来的詹姆斯·韦伯太空望远镜(JWST),有必要阐明望远镜时间投资与科学收益率之间的平衡。我们使用随机森林的监督机器学习方法对各种NIRSPEC模式的传输模型进行11参数模型进行信息内容分析。 The three bluest medium-resolution NIRSpec modes (0.7 - 1.27 microns, 0.97 - 1.84 microns, 1.66 - 3.07 microns) are insensitive to the presence of CO. The reddest medium-resolution mode (2.87 - 5.10 microns) is sensitive to all of the molecules assumed in our model: CO, CO2, CH4, C2H2, H2O, HCN and NH3.它有效地与关于云丰度和粒径编码的信息有效竞争。除了温度和氨气丰度以外,它还具有低分辨率棱镜模式(0.6-5.3微米)的低分辨率棱镜模式(0.6-5.3微米)的竞争。我们建议天文学家使用最红色的中分辨率NIRSPEC模式来研究800-1200 K温暖的海王星的大气化学。它相应的高分辨率对应物提供了减少的回报。我们将我们的发现与以前的JWST信息内容分析进行了比较,这些分析有利于蓝色秩序,并建议如果不适用这种假设,对化学平衡的依赖可能会导致偏见的结果。基于测量H2O,CO和CO2的丰度,提出了一种简单的,不依赖压力的诊断,用于鉴定化学不平衡。

Warm Neptunes offer a rich opportunity for understanding exo-atmospheric chemistry. With the upcoming James Webb Space Telescope (JWST), there is a need to elucidate the balance between investments in telescope time versus scientific yield. We use the supervised machine learning method of the random forest to perform an information content analysis on a 11-parameter model of transmission spectra from the various NIRSpec modes. The three bluest medium-resolution NIRSpec modes (0.7 - 1.27 microns, 0.97 - 1.84 microns, 1.66 - 3.07 microns) are insensitive to the presence of CO. The reddest medium-resolution mode (2.87 - 5.10 microns) is sensitive to all of the molecules assumed in our model: CO, CO2, CH4, C2H2, H2O, HCN and NH3. It competes effectively with the three bluest modes on the information encoded on cloud abundance and particle size. It is also competitive with the low-resolution prism mode (0.6 - 5.3 microns) on the inference of every parameter except for the temperature and ammonia abundance. We recommend astronomers to use the reddest medium-resolution NIRSpec mode for studying the atmospheric chemistry of 800-1200 K warm Neptunes; its corresponding high-resolution counterpart offers diminishing returns. We compare our findings to previous JWST information content analyses that favor the blue orders, and suggest that the reliance on chemical equilibrium could lead to biased outcomes if this assumption does not apply. A simple, pressure-independent diagnostic for identifying chemical disequilibrium is proposed based on measuring the abundances of H2O, CO and CO2.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源