日本地球惑星科学連合2025年大会

講演情報

[E] 口頭発表

セッション記号 P (宇宙惑星科学) » P-AE 天文学・太陽系外天体

[P-AE18] 系外惑星

2025年5月30日(金) 09:00 〜 10:30 304 (幕張メッセ国際会議場)

コンビーナ:小玉 貴則(地球生命研究所、東京科学大学)、川島 由依(京都大学)、野津 翔太(東京大学 大学院理学系研究科 地球惑星科学専攻 地球惑星システム科学講座)、森 万由子(アストロバイオロジーセンター)、座長:伊藤 祐一(国立天文台、科学研究部)、小玉 貴則(地球生命研究所、東京科学大学)


09:15 〜 09:30

[PAE18-02] MIRI-LRS spectrum of a cold exoplanet around a white dwarf: water, ammonia, and methane measurements.

*Mael Milan Voyer1Quentin Changeat2、Pierre-Olivier Lagage3 (1.Paris-Cite University / CEA、2.Kapteyn Instutite, Groningen University / UCL、3.CEA)


キーワード:Exoplanets, Atmospheric retrievals, White dwarf exoplanets, Bayesian statistics

The study of the atmosphere of exoplanets orbiting white dwarfs is a largely unexplored field. With WD 0806-661 b, we present the first deep dive into the atmospheric physics and chemistry of a cold exoplanet around a white dwarf. We observed WD 0806-661 b using JWST's Mid-InfraRed Instrument Low-Resolution Spectrometer (MIRI-LRS), covering the wavelength range from 5 -- 12 microns, and the Imager, providing us with 12.8, 15, 18 and 21 microns photometric measurements. We carried the data reduction of those datasets, tackling second-order effects to ensure a reliable retrieval analysis. Using the TauREx retrieval code, we inferred the pressure-temperature structure, atmospheric chemistry, mass, and radius of the planet. The spectrum of WD 0806-661 b is shaped by molecular absorption of water, ammonia, and methane, consistent with a cold Jupiter atmosphere, allowing us to retrieve their abundances. From the mixing ratio of water, ammonia and methane we derive C/O C/N N/O and the ratio of detected metals as proxy for metallicity. We also derive upper limits for the abundance of CO and CO_2 which were not detected by our retrieval models. While our interpretation of WD 0806-661 b's atmosphere is mostly consistent with our theoretical understanding, some results -- such as the lack of evidence for water clouds, an apparent increase in the mixing ratio of ammonia at low pressure, or the retrieved mass at odds with the supposed age -- remain surprising and require follow-up observational and theoretical studies to be confirmed.