水星の地殻は極端な火山活動によって形成された(Mercury’s Crust Formed by Extreme Volcanism)

2026-08-31 マックス・プランク研究所

水星の地殻形成過程と内部進化を明らかにするため、ドイツのマックス・プランク太陽系研究所などの研究者は、水星表面の二酸化ケイ素(SiO₂)含有量を従来より高精度に推定した。実験室でSiO₂含有量を調整した微小なガラスビーズを作製し、その赤外線特性を測定して、SiO₂量と赤外放射の関係を校正した。さらに月の赤外線観測データと、月探査で得られた実際の岩石試料を用いて手法を検証した後、水星の観測データに適用した。その結果、水星表面のSiO₂は質量比約37%と推定され、従来より最大25%少ないことが判明。この低含有量は、水星の火山岩がより深部で高温に溶融したマントル物質から形成された可能性を示す。今後、ESA・JAXAのBepiColomboによる高精度赤外観測で検証される。

水星の地殻は極端な火山活動によって形成された(Mercury’s Crust Formed by Extreme Volcanism)
Three steps to Mercury. Step 1: Using laboratory measurements, the researchers established a relationship between infrared radiation and SiOcontent. Step 2: They verified this relationship using measurement data from the Moon and lunar samples. Step 3: Using infrared data from Mercury, the researchers were then able to determine the SiOcontent of Mercury’s surface. © MPS / hormesdesign.de

<関連情報>

月と水星の表面における SiO2の存在量 The SiO2 abundance on the surfaces of the Moon and Mercury

Christian Renggli,Morlok Andreas,Iris Weber,Maximilian P. Reitze,Tommaso Di Rocco,Jasper Berndt,Andreas Pack,Harald Hiesinger
Planetary Research  Published:2026-08-27
DOI:https://doi.org/10.53480/bf74-m226

Abstract

The SiO2 abundance on rocky planetary surfaces is a key indicator for planetary crust composition and magmatic evolution. The Christiansen Feature (CF) in the mid-infrared provides a mineralogically grounded proxy for the abundance of SiO2. Here, we present a new experimental calibration based on synthetic glasses with SiO2 concentrations from 0.5 wt.% to 97.6 wt.% SiO2. The CF position shows a strong dependence on the SiO2 concentration, best described by a second-order polynomial (R2 = 0.957). To test the reliability of the new calibration we apply it to Diviner-derived CF data for the surface of the Moon to produce a global map of SiO2 on the lunar surface. The results reproduce the mare-highland bimodality and agree well with independent constraints from all lunar sample-return sites. We derive SiO2 abundances in high-silica regions, including Gruithuisen, Hansteen Alpha, and Lassell Massif with up to 76 wt.% SiO2. This is the first study that quantitatively derives the high SiO2 abundances expected in these high-silica regions with an independent compositional calibration. Finally, the new calibration allows the determination of SiO2 on the surface of Mercury. Using an existing Earth-based CF measurement, we obtain a low abundance of ~37 wt.% SiO2. High spectral and spatial resolution observations of Mercury by the Mercury Radiometer and Thermal Infrared Spectrometer (MERTIS) on the BepiColombo mission will allow a global application of this new approach, which may be extended to other planetary bodies in the future.

1702地球物理及び地球化学
ad
ad
Follow
ad
タイトルとURLをコピーしました