Ryugaku Jinja · Professor Archive
Public Professor Archive
Hiroshi Yamamoto山本 啓司
Kagoshima University · Graduate School of Science and Engineering · 教授
- Publications
- 4
- Projects
- 4
- Keywords
- 2
留学
神社Kagoshima University · Graduate School of Science and Engineering · 教授
Research keywordsGeology・地質学
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- Rashid M.u., Rehman H.U., Lee H.Y., Chung S.L., Das K., Zeb M.J., Ahmad N., Hussain M., Yamamoto H. . Tectono-magmatic evolution of the Ambela granitic complex, Northwest Himalayas, Pakistan:2025 · 記述言語: 日本語 出版者・発行元: Journal of Asian Earth Sciences Ambela Granitic Complex (AGC) is a dominant alkaline magmatic body exposed in the Peshawar Plain Alkaline Igneous Province of the NW Himalaya. However, its petrogenetic source was not clear till data. This study aims to investigate petrogenetic source and magma origin of AGC using whole-rock geochemistry, zircon U–Pb/Lu–Hf isotope and trace element geochemistry. Oscillatory-zoned zircons in AGC yielded <sup>206</sup>Pb/<sup>238</sup>U age spanning between 282 and 287 Ma, indicating granite emplacement during Permian. Positive εHf(t) values of + 1.4 to + 13.8 from zircons confirm mantle-derived juvenile material slightly mixed with continental crust. Whole-rock data show the studied rocks are ferroan, high-K calc-alkaline, and A-type granites. Chondrite-normalized REE patterns of zircon, characterized by LREE depletion, positive Ce and negative Eu anomalies, with elevated U/Yb, Sc/Yb and Nb/Yb ratios, indicate crystallization from an evolved, oxidized melt that underwent plagioclase fractionation in an anorogenic within-plate rift related setting. Zircon-saturation (722 to 858 °C) and Ti-in-zircon (692 to 820 °C) thermometry indicate high-temperature magmatism typical of granitic system. The petrogenetic sequence suggests that initial partial melting of lower crustal rocks was triggered by upwelling of the asthenosphere causing doming and crustal thinning, followed by magmatic differentiation that generated AGC rocks. The presence of mafic dykes in AGC, along with Panjal Trap basalts, represents bimodal magmatism, indicative of mantle plume input. The geochemical affinity and temporal overlap of AGC with the coeval widespread Permian magmatic episode in the Himalayan region suggest an intracontinental rifting related to the Cimmerian orogeny in the northern margin of Gondwana. DOI: 10.1016/j.jseaes.2025.106846 Scopus
- 山本 啓司, 佐藤 良樹 . 九州南西部の芦北地域南部に散在する先古第三系砂岩のモード組成 . 地質学雑誌131 ( 1 ) 147 - 153 2025年7月 詳細を見る 担当区分: 筆頭著者, 責任著者 記述言語: 日本語 掲載種別: 研2025 · 担当区分: 筆頭著者, 責任著者 記述言語: 日本語 掲載種別: 研究論文(学術雑誌) 出版者・発行元: 一般社団法人 日本地質学会 DOI: 10.5575/geosoc.2025.0012 CiNii Research
- 山本 啓司, 磯﨑 行雄, 岡本 和明 . 中琉球の新たな地体構造単元「徳之島帯」 . 地学雑誌133 ( 6 ) 447 - 464 2024年12月 詳細を見る 担当区分: 筆頭著者, 責任著者 記述言語: 日本語 出版者・発行元: 公益2024 · 担当区分: 筆頭著者, 責任著者 記述言語: 日本語 出版者・発行元: 公益社団法人 東京地学協会 The latest geological and geotectonic aspects of Tokunoshima Island in Central Ryukyus are reviewed. The pre-Quaternary basement geology of the island is two-fold; i.e., the Cretaceous accretionary complex (Amagidake and Omo units) and the high-grade metamorphic unit newly named the Inokawadake metamorphic complex (IMC). The former is correlated with the northern subbelt of the Shimanto belt in SW Japan. The IMC is composed of high-grade metamorphic rocks composed of pelitic–psammitic schists, with minor lenses of serpentinite and “dioritic gneiss” with Paleoproterozoic (ca. 1.8 Ga) zircons. In the southern half of the island, the IMC structurally overlies the Cretaceous AC as a klippe, which is separated probably by a subhorizontal fault. The IMC suffered from high-grade metamorphism up to the amphibolite facies, which is extremely rare in the Shimanto belt. A new geotectonic unit, the Tokunoshima belt, is newly proposed for the area of the IMC, which is limited to a mountainous domain in southern Tokunoshima Island. Based on the youngest detrital zircon U-Pb ages (ca. 60 Ma) from psammitic schists, the metamorphism of the IMC probably occurred in the Paleocene or later. Possible sites for the Paleocene or later heat source may include the San-in (Paleogene batholith) belt in SW Japan on the north and/or an unknown collided island arc system from the south. DOI: 10.5026/jgeography.133.447 Scopus CiNii Research
- 貞包 健良, 山本 啓司, 上田 脩郎, 笠原 慎平, 久保 臣悟, 寺林 優 . 徳之島の秋利神川河口に産する暗色破砕岩脈 . 地質学雑誌129 ( 1 ) 633 - 642 2023年12月 詳細を見る 担当区分: 責任著者 記述言語:2023 · 担当区分: 責任著者 記述言語: 日本語 掲載種別: 研究論文(学術雑誌) 出版者・発行元: 一般社団法人 日本地質学会 <p>徳之島西部の秋利神川河口には,泥質片岩と砂質片岩からなる岩塊が露出していて,その北東面から東面にかけて暗灰色の脈(暗色脈)が貫入している.暗色脈は厚さが10ないし20 cm程度であり,細粒の基質と岩片からなる.岩片のほとんどは泥質片岩と砂質片岩であり,稀に角閃岩が認められる.暗色脈は基質を含めて母岩と同程度に固結している.岩片のサイズ分布が尺度不変であることと,粉末X線回折プロファイルにおいて非結晶質物質に特徴的なハローがないことから,暗色脈の主要な構成物は破砕生成物である.暗色脈の基質においてアナテースの微細粒が環状に配列して方解石とチタナイトを囲んでいる.これはCO2と水の存在下でチタナイトが分解されたことを示す.秋利神川河口の暗色脈は,変成岩体内部に生じた過剰な流体圧が断層または剪断帯の活動を誘発し,破砕生成物が流動化して貫入したカタクラスティック脈の末端部であると推察される.</p> DOI: 10.5575/geosoc.2023.0028 CiNii Research
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