金星の謎めいた雲に極めて強い光吸収物質が潜んでいる可能性(Venus’s Mysterious Clouds May Hide an Exceptionally Strong Light Absorber)

2026-08-27 韓国基礎科学研究院(IBS)

金星上層大気の硫酸雲に見られる紫外線の暗い模様の原因とされる「未知の吸収物質」について、研究チームは金星観測と放射輸送モデルを組み合わせ、雲粒内部の液体が必要とする光吸収特性を定量化した。365~455 nmの波長域では、375 nm付近で吸収係数が約1,278 cm⁻¹に達する必要があり、未知物質は非常に高い吸収効率、高濃度、またはその双方を持つと推定された。候補として高い光吸収能を持つ共役有機分子が考えられるが、有機物や生命由来物質であることを示すものではない。また、金星雲の吸収スペクトルが比較的急峻に変化することから、硫酸中で生成する複雑なタール状混合物とは異なる、化学的に特定された物質の可能性が示唆された。今後、実験室実験や金星探査による直接測定で候補物質を検証することが期待される。

金星の謎めいた雲に極めて強い光吸収物質が潜んでいる可能性(Venus’s Mysterious Clouds May Hide an Exceptionally Strong Light Absorber)
Figure 1. Description of Venus’ unknown absorber

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Venus’s Mysterious Clouds May Hide an Exceptionally Strong Light Absorber
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金星雲エアロゾルのバルク液体における紫外線-青色吸収のモデルは、高濃度における効率的な有機吸収体と一致する A Model of UV–Blue Absorbance in Bulk Liquid of Venusian Cloud Aerosols Is Consistent with Efficient Organic Absorbers at High Concentrations

Jan Spacek, Paul B. Rimmer, […], and Yeon Joo Lee
Astrobiology  Published:August 25, 2026
DOI:https://doi.org/10.1177/15311074261477502

Abstract

At visible wavelengths, Venus appears serene and pale yellow. But since the 1920s, observers have noted high-contrast features in the ultraviolet. These features track the ∼4-day superrotation of the upper cloud deck and vary widely over time and space. The identity of the UV absorber(s)—active between at least 280 and 500 nm—remains unknown, as no proposed candidate fully matches all observational data. From remote observations of Venus, and accounting for light scattering by cloud droplets, we modeled the 365–455 nm decadic absorption coefficient,aλ , of the bulk liquid that forms Venus’s clouds. Assuming a uniform distribution in mode 1 and mode 2 particles across a 6 km layer below the cloud top at 65 km, we constrained the decadic absorption coefficient within the modeled range to a peak at a375= 1278 cm−1, equivalent to a decadic absorbance of A375 = 1278 for a 1 cm path length. This extremely high absorption coefficient implies the presence of a highly efficient absorber, for example, conjugated organics, at relatively high concentrations—for example, ∼12 g/L for porphyrin-type pigments with a representative peak molar absorption coefficient of ∼105 M−1cm−1. Inorganic absorbers, typically below 104 M−1cm−1, would either need to constitute a large portion of the aerosols or still not be sufficiently light-absorbing, even in pure form. We emphasize that all candidate absorbers must be evaluated against Venus’s reflectance curve using (1) known molar absorption coefficients, (2) realistic atmospheric distributions, and (3) appropriate particle size distributions. The planned Rocket Lab mission will test the hypothesis of organics in Venus’s clouds.

1702地球物理及び地球化学
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