nkysdb: なかよし論文データベース
ARIMA Hiroshi 様の 共著関連データベース
+(A list of literatures under single or joint authorship with "ARIMA Hiroshi")
共著回数と共著者名 (a list of the joint author(s))
25: ARIMA Hiroshi
15: YOSHIASA Akira
8: OKUBE Maki
7: OHTAKA Osamu
6: FUKUI Hiroshi, NAKATSUKA Akihiko
3: HONGU Hidetomo, KATAYAMA Yoshinori, MATSUDA Jun-ichi, MATSUMOTO Takuya, MOMMA Koichi, NAKAYAMA Noriaki
2: ISOBE Hiroshi, ITO Eiji, KAWAMATA Toru, MIKOUCHI Takashi, MIYAWAKI Ritsuro, NAGAI Takaya, SHIMOKAWA Mami, TOBASE Tsubasa, YONEDA Akira
1: ANDRAULT Denis, FURUKAWA Yuki, HARADA Yuya, HARIU Tsuyoshi, HIRATOKO Tatsuya, HU Yuan, ITAKURA Yoshinori, JINNOUCHI Satoshi, KAMEDA Jun, KIDA Yusuke, KIKEGAWA Takumi, KOMATSU Toshifumi, KONDO Hayato, KONNO Hayato, KUBO Katsuyuki, KUME Shoichi, KURIBAYASHI Shoichi, MAEKAWA Takumi, MASHIMO Tsutomu, MASUMOTO Hirokazu, MIYANO Yumiko, MIYAWAKI Ritsurou, MURAI Kei-ichiro, NISHIMIYA Shinobu, OHISHI Yasuo, OHNISHI Naoyuki, ONO Kenya, SASAKI Satoshi, SHIMONO Masaru, SHIMURA Reiko, SUGIURA Teruki, TAKEBE Hitoshi, TANIDA Hajime, TERADA Yasuko, TESHIMA Aya, TOKUDAMakoto, UTSUMI Wataru, WANG Ling, WATANABE Tohru, YAMAMOTO Junji, YAMAMOTO Yuzuru, YAMANAKA Takamitsu
発行年とタイトル (Title and year of the issue(s))
2004: HIP production of a diamond/SiC composite and application to high pressure anvils
2004: Pressure Induced Coordination Change in Germanate Melts: High Pressure and High Temperature in Situ XAFS Study (152 23)
2006: EXAFS and diffraction study of AgI under high pressure and high temperature
2006: EXAFS measurement for iron under high pressure conditions
2006: High pressure XAFS Study of Germanate Melts
2006: Local structure of noble gas in terrestrial and planetary materials
2007: Noble gas transport during dehydrateion processes in the subducting oceanic crust
2008: Behaviour of noble gases during dehydration processes in the subducting oceanic crust
2011: Static disorders of atoms and experimental determination of Debye temperature in pyrope: Low and high temperature single crystal X ray diffraction study
2013: Local structure of iron in tektites and natural glass: An insight through X ray absorption fine structure spectroscopy
2013: Static disorders of atoms and experimental determination of Debye temperature in pyrope: Low and high temperature single crystal X‑ray diffraction study—Reply
2013: The structure of hydrated copper silicate gels, an analogue compound for natural chrysocolla
2015: Local structure around Ge in lithium germanate glasses analyzed by AXS and EXAFS techniques
2015: Temperature dependence of crystal structure of CaGeO3 high pressure perovskite phase and experimental determination of its Debye temperatures studied by low and high temperature single crystal X ray diffraction
2016: Crystal structure refinements of legrandite, adamite, and paradamite: The complex structure and characteristic hydrogen bonding network of legrandite
2016: Distribution of Mn in pink elbaitic tourmaline from Mogok, Myanmar
2016: Structural refinement of kottigite parasymplesite solid solution: Unique cation site occupancy and chemical bonding with water molecules
2017: XAFS study on the location of Cu and Mn in a greenish blue elbaite from Alto dos Quntos mine, Brazil
2018: Crystal structure refinement and chemical formula of prosopite, CaAl2F4[(OH)4−xFx] x = 0.0–1.0
2018: Dehydroxylation Kinetics of Clay Minerals and Its Application to Friction Heating Along an Imbricate Thrust in an Accretionary Prism
2018: Determination of elastic constants of single crystal chromian spinel by resonant ultrasound spectroscopy and implications for fluid inclusion geobarometry
2018: Structural variations accompanied by thermal expansion of diaspore: in situ single crystal and powder X ray diffraction study
2018: The location of Mn (MnO: 2.0 wt%) in fluorapatite from Lavra da Golconda, near Governador Valadares, Minas Gerais, Brazil
2019: Crystal structure refinement of MnTe2, MnSe2, and MnS2: cation anion and anion–anion bonding distances in pyrite type structures
2019: Titanium local coordination environments in Cretaceous Paleogene and Devonian Carboniferous boundary sediments as a possible marker for large meteorite impact