nkysdb: 共著者関連データベース

下宿 彰 様の 共著関連データベース

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+(A list of literatures under single or joint authorship with "下宿 彰")

共著回数と共著者名 (a list of the joint author(s))

    37: 下宿 彰

    23: 久保 友明

    22: 大谷 栄治

    11: 加藤 工

    7: 芳野 極, 西 真之

    6: 中村 智樹, 土井 菜保子, 岡崎 隆司, 白石 令

    5: 肥後 祐司, 舟越 賢一, 鈴木 昭夫

    4: 圦本 尚義, 山崎 大輔

    3: 亀卦川 卓美, 宮原 正明, 富永 愛子, 工藤 貴英, 羽江 亮太, 金川 久一

    2: 寺崎 英紀, 新藤 澄人, 鴛渕 孝太

    1: CHAKRABORTY S., CHAKRABORTY Sumit, DOHMEN R., DOHMEN Ralf, GUO Xinzhuan, シュウ ジュンシャン, シュウ ファン, チャクラボルティー スーミット, ボージバー アズマ, 和田 穣隆, 嘉数 勇基, 富岡 尚敬, 山下 茂, 川添 貴章, 平賀 岳彦, 桂 智男, 永吉 麻衣子, 細矢 智史, 藤田 清士, 西原 遊, 西山 宣正, 西田 圭佑, 趙 大鵬, 跡上 直子, 辻野 典秀, 野田 真彦


発行年とタイトル (Title and year of the issue(s))

    2001: Wadsleyiteの陽イオン拡散に与える水の効果(A9 009) [Net] [Bib]
    Effects of water on cation diffusion in wadsleyite (A9 009) [Net] [Bib]

    2003: Wadsleyite中のSiの自己拡散(I021 007) [Net] [Bib]
    Si self diffusion in wadsleyite(I021 007) [Net] [Bib]

    2003: Wadsleyite中の水素拡散(I021 P022)(ポスターセッション) [Net] [Bib]
    Diffusion of hydrogen in wadsleyite(I021 P022) [Net] [Bib]

    2003: Wadsleyite中の陽イオン拡散とマントル遷移層の電気伝導度,レオロジー [Net] [Bib]
    Cation diffusion in wadsleyite and rheology of mantle transition zone [Net] [Bib]

    2003: マントル深部に沈み込む海洋プレートの密度および強度に対する非平衡相転移の影響(I021 P027)(ポスターセッション) [Net] [Bib]
    Effects of transformation kinetics on the density and strength of the descending oceanic plate into the deep mantle(I021 P027) [Net] [Bib]

    2004: Wadsleyite中のシリコンの自己拡散速度:マントル遷移層およびスラブのレオロジーへの応用(I021 P003) [Net] [Bib]
    Silicon self diffusion rates in wadsleyite Implications for rheology of mantle transition zone and subducting slabs (I021 P003) [Net] [Bib]

    2004: ウォズレアイト中の陽イオン拡散と沈み込むスラブのレオロジー(ポスターセッション) [Net] [Bib]
    Cation diffusion in wadsleyite and the rtheology of subducting slabs [Net] [Bib]

    2005: Diffusion of hydrogen in wadsleyite and water in the transition zone (I076 P005) [Net] [Bib]

    2005: Hydrous RingwooditeのTEM観察 [Net] [Bib]
    TEM observations of hydrous ringwoodite [Net] [Bib]

    2005: リングウッダイト中のシリコン拡散 [Net] [Bib]
    Silicon diffusion in ringwoodite [Net] [Bib]

    2006: MgSiO3アキモトアイトの格子選択配向(I222 P031) [Net] [Bib]
    The lattice preferred orientation of Akimotoite MgSiO3 (I222 P031) [Net] [Bib]

    2006: Wadsleyite中におけるフルイドの連結度(I143 P019) [Net] [Bib]
    Connectivity of aqueous fluid in wadsleyite aggregate (I143 P019) [Net] [Bib]

    2006: リングウッダイト中の水素拡散(I143 P021) [Net] [Bib]
    Diffusion of hydrogen in ringwoodite (I143 P021) [Net] [Bib]

    2007: The lattice preferred orientation of akimotoite MgSiO3(I214 P019) [Net] [Bib]

    2008: Transition in crystallographic preferred orientation of akimotoite and its application to seismic anisotropy of the Tonga slab(I212 012) [Net] [Bib]

    2008: Transport properties of the Mantle Transition zone minerals(I212 015) [Net] [Bib]

    2008: ウォズレアイトとリングウッダイト中のSiとOの拡散(I127 016) [Net] [Bib]
    Si and O diffusion in wadsleyite and ringwoodite(I127 016) [Net] [Bib]

    2008: ウォズレアイトとリングウッダイト中の原子拡散とマントル遷移層のレオロジーへの適用 [Net] [Bib]
    Diffusion in wadsleyite and ringwoodite and implications for the rheology of the mantle trasition zone [Net] [Bib]

    2008: ポストスピネル相転移の核生成−成長カイネティクス [Net] [Bib]
    Nucleation and growth kinetics of the post spinel transformation [Net] [Bib]

    2008: 無水条件下におけるMg2SiO4ウォズレアイト中のシリコン拡散(I212 P015) [Net] [Bib]
    Si diffusivity in Mg2SiO4 wadsleyite under nominally dry conditions(I212 P015) [Net] [Bib]

    2009: 2次元回折X線時分割測定によるオリビン ウォズレアイト相転移の核生成速度の測定 [Net] [Bib]
    Estimation of the nucleation rates of olivine wadsleyite transformation by the time resolved 2DXRD observation [Net] [Bib]

    2009: An in situ X ray diffraction study on the high pressure decomposition reaction of albite under differential stresses(I130 P008) [Net] [Bib]

    2009: Nucleation controlled (N type) post spinel transformation and topography of the 660 km discontinuity by mantle flow(I131 003) [Net] [Bib]

    2009: Preliminary experiments on two phase grain growth kinetics in perovskite and periclase aggregates at lower mantle conditions(I130 P004) [Net] [Bib]

    2009: Stress relaxation test of olivine under Earth's deep upper mantle conditions(I212 032) [Net] [Bib]

    2009: メージャライトのback transformationカイネティクス マントル遷移層からのダイヤモンド上昇履歴 [Net] [Bib]
    Back transformation kinetics of majoritic garnet: Rapid ascent of diamond from the mantle transition zone [Net] [Bib]

    2009: 差応力下におけるアルバイトの高圧相転移実験 [Net] [Bib]
    High pressure transformation experiments of albite under differential stresses [Net] [Bib]

    2010: 高温高圧実験によるスピネル‐ガーネットかんらん岩相転移カイネティクスの研究(SIT037 P03) [Net] [Bib]
    An experimentally study on kinetics of spinel garnet lherzolite phase transformation(SIT037 P03) [Net] [Bib]

    2011: Laboratory based electrical conductivity profile of the mantle transition zone(SIT004 03) [Net] [Bib]

    2011: アルバイト分解反応における塑性強度変化(SIT039 P08) [Net] [Bib]
    Changes of flow strength during the albite decomposition(SIT039 P08) [Net] [Bib]

    2011: 高圧下における流体相を含む地殻岩石の電気伝導度(SCG060 23) [Net] [Bib]
    Electrical conductivity of fluid bearing crustal rock under high pressure(SCG060 23) [Net] [Bib]

    2012: 25GPaにおけるアルミナスペロフスカイト中のSiとMgの拡散(SIT42 14) [Net] [Bib]
    Si and Mg diffusion in aluminous perovskite at 25 GPa(SIT42 14) [Net] [Bib]

    2012: CaIrO3ペロフスカイトとポストペロフスカイト間の相転移における結晶方位関係とその結果の解釈・応用(SIT02 04) [Net] [Bib]
    Relationship of crystallographic orientation between perovskite and post perovskite in CaIrO3 and its implication(SIT02 04) [Net] [Bib]

    2012: ペロフスカイトとペリクレースからのリングウッダイトの反応縁の成長速度とマントルプリュームのダイナミクスへの応用(SIT02 P03) [Net] [Bib]
    Growth rate of ringwoodite reaction rim between perovskite and periclase with implications for dynamics of mantle plumes(SIT02 P03) [Net] [Bib]

    2013: パイロープに富むガーネット中のSi拡散の温度と圧力依存性(SIT04 P05) [Net] [Bib]
    Effects of pressure and temperature on the silicon diffusivity of pyrope rich garnet (SIT04 P05) [Net] [Bib]

    2013: 流体を含む岩石の電気伝導度(SIT06 03) [Net] [Bib]
    Electrical conductivity of fluid bearing rocks (SIT06 03) [Net] [Bib]

    2013: 火山体環境下での流紋岩の電気伝導度変化(26) [Net] [Bib]
    Variations in electrical conductivity of rhyolitic melt simulating physical conditions beneath the volcanic body (26) [Net] [Bib]

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