日本地球惑星科学連合2025年大会

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[E] 口頭発表

セッション記号 P (宇宙惑星科学) » P-PS 惑星科学

[P-PS05] Recent advances in the science of Venus

2025年5月28日(水) 09:00 〜 10:30 304 (幕張メッセ国際会議場)

コンビーナ:佐藤 毅彦(宇宙航空研究開発機構・宇宙科学研究本部)、はしもと じょーじ(岡山大学学術研究院自然科学学域)、McGouldrick Kevin(University of Colorado Boulder)、Tellmann Silvia(University of Cologne)、Chairperson:Silvia Tellmann(University of Cologne)、はしもと じょーじ(岡山大学学術研究院自然科学学域)

09:40 〜 09:55

[PPS05-08] Life cycle of large cloud discontinuity in Venus' atmosphere as inferred from Akatsuki/IR2 data

*佐藤 毅彦1佐藤 隆雄2はしもと じょーじ3今村 剛4黒田 剛史5 (1.宇宙航空研究開発機構・宇宙科学研究所、2.北海道情報大学、3.岡山大学、4.東京大学、5.東北大学)

キーワード:金星雲、不連続、赤外線観測、放射伝達

Observations of Venus' night-side disc in the transparency windows of the CO2 atmosphere (including 1.74 and 2.3 um wavelengths) allow us to study various atmospheric phenomena in the middle to lower cloud layers of Venus. A sharp and large discontinuity of cloud opacities was observed in the night-side of Venus with the IR2 2-um camera onboard Akatsuki Venus Orbiter (Peralta et al., 2020). We have developed image restoration techniques which successfully recovered the "true" contrast between this enormous cloud cover (ECC) and the adjacent background cloud (BC) regions. By comparing the data in two filters of IR2 (1.735 and 2.26 um) with radiative transfer computations, the differences of cloud structure in the BC and ECC regions were studied. It is found that an increase of Mode 3 particles near the cloud base (~48 km altitude) can reproduce the decreasing radiance from BC to ECC in both filters. Although this is not a unique explanation of how the cloud structure changes from BC to ECC region, this is consistent with an idea that such a discontinuity can be produced by a bore wave near the cloud base. Case studies of different observation dates and implications to the mechanism will be discussed.