星間彗星3I/ATLASにおける特異な水放出メカニズムを解明(Scientists Uncover Unique Water Release Mechanism in Interstellar Comet 3I/ATLAS)

2026-03-18 中国科学院(CAS)

中国科学院上海天文台の研究チームは、系外彗星「3I/ATLAS」における特異な水放出メカニズムを電波観測により解明した。天馬65m電波望遠鏡でOHスペクトルを観測し、水蒸気放出量が太陽接近に伴い増加することを確認。特に水の多くが核から直接ではなく、コマ中の氷粒子の二次昇華(拡張ソース)によって供給され、最大で全体の約80%を占めることを示した。またCOも豊富で、CO/H2O比は約28%と高く、極低温環境で形成された可能性が示唆された。本成果は、系外小天体の形成環境や揮発性成分の多様性理解に重要な知見を提供する。

星間彗星3I/ATLASにおける特異な水放出メカニズムを解明(Scientists Uncover Unique Water Release Mechanism in Interstellar Comet 3I/ATLAS)
The Tianma Radio Telescope and some of the comets it has observed. (Image by SHAO)

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星間彗星3I/ATLASの近日点通過前の揮発性物質の進化は、彗星のコマにある広範囲にわたる発生源からの重要な寄与を示唆している Preperihelion Volatile Evolution of Interstellar Comet 3I/ATLAS Indicating Significant Contribution from an Extended Source in the Coma The Astrophysical Journal Letters  Published: 2026 February 25 DOI:10.3847/2041-8213/ae45a2

Abstract

Interstellar comets provide rare opportunities for probing the diversity of refractory and volatile inventory around other stars. As the second ever interstellar comet and the third interstellar object, 3I/ATLAS has been the focus of telescopic observations since its discovery in 2025 July. Following the previous observations at multiwavelengths, we present further radio observations of the 1665/1667 MHz ground-state OH lines and millimeter observations of the CO(J = 1–0) transition at 115.271 GHz that trace the coma H2O and CO abundances, respectively. We derived OH production rates of (1.32 ± 0.47) × 1028 s−1 at 2.27 au and (1.89 ± 0.37) × 1028 s−1 at 1.96 au, as well as an average CO production rate of (5.75 ± 1.91) × 1027 s−1 between 2.33 and 1.75 au, inferring a CO/H2O ratio of (28% ± 11%). With the mean HCN production rate of 2.5 × 1025 s−1 at 2.1 au reported by N. X. Roth et al. and I. M. Coulson et al., we infer a CO/HCN ratio of (230 ± 76). By synthesizing water production rates measured with instruments of different apertures, we found that the sublimation from an extended source in the coma contributes significantly to 3I’s preperihelion water measurements, accounting for up to 80% from 3 to 2 au.

1702地球物理及び地球化学
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