Giant rhyolite lava dome formation after 7.3 ka supereruption at Kikai caldera, SW Japan

Kikai submarine caldera to the south of the Kyushu Island, SW Japan, collapsed at 7.3 ka during the latest supereruption (>500 km 3 of magma) in the Japanese Archipelago. Multi functional research surveys of the T/S Fukae Maru in this caldera, including multi-beam echosounder mapping, remotely op...

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Veröffentlicht in:Scientific reports 2018-02, Vol.8 (1), p.2753-9, Article 2753
Hauptverfasser: Tatsumi, Yoshiyuki, Suzuki-Kamata, Keiko, Matsuno, Tetsuo, Ichihara, Hiroshi, Seama, Nobukazu, Kiyosugi, Koji, Nakaoka, Reina, Nakahigashi, Kazuo, Takizawa, Hideaki, Hayashi, Kazuki, Chiba, Tatsuro, Shimizu, Satoshi, Sano, Mamoru, Iwamaru, Hikaru, Morozumi, Haruhisa, Sugioka, Hiroko, Yamamoto, Yojiro
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Sprache:eng
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Zusammenfassung:Kikai submarine caldera to the south of the Kyushu Island, SW Japan, collapsed at 7.3 ka during the latest supereruption (>500 km 3 of magma) in the Japanese Archipelago. Multi functional research surveys of the T/S Fukae Maru in this caldera, including multi-beam echosounder mapping, remotely operated vehicle observation, multi-channel seismic reflection survey, and rock sampling by dredging and diving, provided lines of evidence for creation of a giant rhyolite lava dome (~32 km 3 ) after the caldera collapse. This dome is still active as water column anomalies accompanied by bubbling from its surface are observed. Chemical characteristics of dome-forming rhyolites akin to those of presently active small volcanic cones are different from those of supereruption. The voluminous post-caldera activity is thus not caused simply by squeezing the remnant of syn-caldera magma but may tap a magma system that has evolved both chemically and physically since the 7.3-ka supereruption.
ISSN:2045-2322
2045-2322
DOI:10.1038/s41598-018-21066-w