2025”N04ŒŽ01“ú@˜a“c‘s•―‚ģ‚ņ‚Ė˜_•ķ‚ŠMaPSŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Wada, S., Bajo, K.-i., Obase, T. and Yurimoto, H. (2025) Evidence of solar wind irradiation on mineral grains embedded in matrix of the Northwest Africa 801 CR chondrite. Meteorit. Planet. Sci. https://doi.org/10.1111/maps.14346

2025”N1ŒŽ8“ú@Ž’·’J’qÆ‚ģ‚ņ‚Æ”nãŒŠˆę‚ģ‚ņ‚Ė˜_•ķ‚ŠApJŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Obase, T., Bajo, K.-i., Otsuki, Y. and Yurimoto, H. (2025) Extreme solar particle ejection event in the last few million years from asteroid Itokawa sample. Astrophys. J. 978, 142. https://doi.org/10.3847/1538-4357/ad9919

2024”N10ŒŽ16“ú@—鑚–ū­‚ģ‚ņ‚Ɛė핋ģs‚ģ‚ņ‚Ė˜_•ķ‚ŠMaPSŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D•\ކ‚É‚ā‚Č‚Á‚Ăǂ܂·D
Suzumura, A., Kawasaki, N., Yurimoto, H. and Itoh, S. (2024) Condensation of refractory minerals on igneous compact type A Ca-Al-rich inclusion from Northwest Africa 7865 CV chondrite. Meteorit. Planet. Sci. 59, 2388-2402. https://doi.org/10.1111/maps.14222

2024”N8ŒŽ22“ú@ė핋ģs‚ģ‚ņ‚Ė˜_•ķ‚ŠGCAŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Sugawara, S., Fujiya, W., Kawasaki, N., Sakamoto, N., Yamaguchi, A. and Yurimoto, H. (2024) Update on the 53Mn-53Cr ages of dolomite in the Ivuna CI chondrite and asteroid Ryugu sample. Geochim. Cosmochim. Acta 382, 40-50. https://doi.org/10.1016/j.gca.2024.08.013

2024”N4ŒŽ25“ú@ŽR–{‘å‹M‚ģ‚ņ‚Ė˜_•ķ‚ŠGCAŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Yamamoto, D., Kawasaki, N., Tachibana, S., Ishizaki, L., Sakurai, R. and Yurimoto, H. (2024) An experimental simulation of oxygen isotope exchange reaction between amorphous silicate dust and carbon monoxide gas in the early Solar System. Geochim. Cosmochim. Acta. 374, 93-105. https://doi.org/10.1016/j.gca.2024.04.014

2024”N4ŒŽ10“ú@ė핋ģs‚ģ‚ņ‚Ė˜_•ķ‚ŠMaPSŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Kawasaki, N., Yamamoto, D., Wada, S., Park, C., Kim, H., Sakamoto, N. and Yurimoto, H. (2024) 26Al|26Mg chronology of high-temperature condensate hibonite in a fine-grained, Ca-Al-rich inclusion from reduced CV chondrite. Meteorit. Planet. Sci. 59, 630-639. https://doi.org/10.1111/maps.13989

2024”N4ŒŽ2“ú@”nãŒŠˆę‚ģ‚ņ‚Ė˜_•ķ‚ŠAnal. Chem. Ž‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Bajo, K.-i., Kawasaki, N., Sakaguchi, I., Suzuki, T. T., Itose, S., Matsuya, M., Ishihara, M., Uchino, K. and Yurimoto, H. (2024) In Situ Helium Isotope Microimaging of Meteorites. Analytical Chemistry. 96, 5143-5149. https://doi.org/10.1021/acs.analchem.3c05201

2024”N4ŒŽ2“ú@”nãŒŠˆę‚ģ‚ņ‚Ė˜_•ķ‚ŠJASTŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Bajo, K.-i. and Yurimoto, H. (2024) Nanoscale analysis of noble gas in solids. Journal of Analytical Science and Technology. 15, 19. https://doi.org/10.1186/s40543-024-00429-1

2022”N12ŒŽ17“ú@ė핋ģs‚ģ‚ņ‚Ė˜_•ķ‚ŠScience AdvancesŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Kawasaki et al. (2022) Oxygen isotopes of anhydrous primary minerals show kinship between asteroid Ryugu and comet 81P/Wild2. Science Advances 8, eade2067. https://doi.org/10.1126/sciadv.ade2067

2022”N11ŒŽ9“ú@”nãŒŠˆę‚ģ‚ņ‚Ė˜_•ķ‚ŠJ. Mass Spectrom. Ž‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Bajo, K., Aoki, J., Ishihara, M.  Furuya, S., Nishimura, M., Yoshitake, M. and Yurimoto, H. (2022) Development of electrostatic-induced charge detector for multiturn time-of-flight mass spectrometer. J Mass Spectrom., e4892. https://doi.org/10.1002/jms.4892

2022”N10ŒŽ1“ú@Ž’·’J’qÆ‚ģ‚ņ‚Ė˜_•ķ‚Š IcarusŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Obase, T. and Nakashima, D. (2023) Past solar wind flux recorded in solar-gas-rich meteorites. Icarus 389, 115290. https://doi.org/10.1016/j.icarus.2022.115290

2022”N9ŒŽ20“ú@ŽR–{‘å‹M‚ģ‚ņ‚Ė˜_•ķ‚ŠGCAŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Yamamoto, D., Kawasaki, N., Tachibana, S., Kamibayashi, M. and Yurimoto, H. (2022) Oxygen isotope exchange kinetics between CAI melt and carbon monoxide gas: Implication for CAI formation in the earliest Solar System. Geochim. Cosmochim. Acta 336, 104-112. https://doi.org/10.1016/j.gca.2022.09.006

2022”N6ŒŽ9“ú@‰ĄŽR“N–įE‰i“‡ˆęG‚ģ‚ņ‚Ė˜_•ķ‚ŠƒTƒCƒGƒ“ƒXŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Yokoyama, T., Nagashima, K. et al. (2022) Samples returned from the asteroid Ryugu are similar to Ivuna-type carbonaceous meteorites. Science, eabn7850. https://doi.org/10.1126/science.abn7850

2021”N1ŒŽ31“ú@‘å’ΗI‘ū‚ģ‚ņ‚Ė˜_•ķ‚ŠŽŋ—Ę•ŠÍƒIƒ“ƒ‰ƒCƒ“Ž‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
‘å’ΗI‘ūC”nãŒŠˆęCš§–{Ū‹` (2021) “ŊˆĘ‘ĖƒiƒmƒXƒR[ƒv‚É‚æ‚é’n‹…ŠO•ĻŽŋ‚ĖŠóƒKƒX[‚ģ•ûŒü•ŠÍ‚ÉŒü‚Ŋ‚―”ũŽ—ąŽq•ŠÍ–@‚ĖŠJ”­. JMSSJ On-line, 69, 6, 197-201.

2021”N12ŒŽ15“ú@ã—ŅŠC‚ŋ‚é‚ģ‚ņ‚Ė˜_•ķ‚Š ApJLŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Kamibayashi, M., Tachibana, S., Yamamoto, D., Kawasaki, N. and Yurimoto, H. (2021) Effect of hydrogen gas pressure on calcium|aluminum-rich inclusion formation in the protosolar disk: A laboratory simulation of open-system melt crystallization. Astrophys. J. Lett. 923, L12. http://dx.doi.org/10.3847/2041-8213/ac3c41

2021”N12ŒŽ5“ú@ėč‹ģs‚ģ‚ņ‚Ė˜_•ķ‚Š Journal of Volcanology and Geothermal ResearchŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Sas, M., Shane, P., Kawasaki, N., Sakamoto, N., Zellmer, G. F. and Yurimoto, H. (2022) Inter- and intra-crystal quartz ƒÂ18O homogeneity at Okataina volcano, Aotearoa New Zealand: Implications for rhyolite genesis. Journal of Volcanology and Geothermal Research 421, 107430. https://doi.org/10.1016/j.jvolgeores.2021.107430

2021”N11ŒŽ2“ú@‹k@ČŒá‚ģ‚ņ‚Š –xęŧėŠ‚Ė‚Í‚â‚Ô‚ģ‚Q“ÁÝƒy[ƒW‚É“oęD

2021”N10ŒŽ5“ú@‰i“cN—S‚ģ‚ņ‚Ė˜_•ķ‚Š CSFŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Nagata, K., Bajo, K.-i., Mitomo, H., Fujita, R., Uehara, R., Ijiro, K. and Yurimoto, H. (2021) Visualization of DNA replication in single chromosome by stable isotope labeling. Cell Structure and Function. https://doi.org/10.1247/csf.21011

2021”N10ŒŽ1“ú@ŽR–{‘å‹M‚ģ‚ņ‚Ė˜_•ķ‚ŠGCAŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Yamamoto, D., Kawasaki, N., Tachibana, S., Kamibayashi, M. and Yurimoto, H. (2021) An experimental study on oxygen isotope exchange reaction between CAI melt and low-pressure water vapor under simulated Solar nebular conditions. Geochim. Cosmochim. Acta 314, 108-120. https://doi.org/10.1016/j.gca.2021.09.016 

2021”N9ŒŽ9“ú@ėč‹ģs‚ģ‚ņ‚Š“ú–{’n‹…‰ŧŠw‰ï§—ãÜ‚ðŽóÜ‚ĩ‚Ü‚ĩ‚―D˜a“c‘s•―‚ģ‚ņ‚Š‚ŧ‚ĖƒTƒCƒe[ƒVƒ‡ƒ“‚ðs‚ǂ܂ĩ‚―D

2021”N8ŒŽ5“ú@ėč‹ģs‚ģ‚ņ‚Ė˜_•ķ‚ŠGJŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Kawasaki, N., Park, C., Wakaki, S., Kim, H., Park, S., Yoshimura, T., Nagaishi, K., Kim, H. N., Sakamoto, N. and Yurimoto, H. (2021) An effect of variations in relative sensitivity factors on Al-Mg systematics of Ca-Al-rich inclusions in meteorites with secondary ion mass spectrometry. Geochem. J. 55, 283-287.

2021”N7ŒŽ8“ú@‰Ą‘q —ā“Þ‚ģ‚ņC˜a“c ‘s•―‚ģ‚ņ‚Š—Šw‰@—DGŒĪ‹†§—ãÜ‚ðŽóÜ‚ĩ‚Ü‚ĩ‚―D
@@@@@@@‚ą‚ĖÜ‚ÍC—Šw‚ÉŠÖ‚·‚é—D‚ę‚―ŒĪ‹†‚𐄐i‚·‚éŠwķ‚ÉŽö—^‚ģ‚ę‚é‚ā‚˂ł·D

2021”N7ŒŽ7“ú@ėč‹ģs‚ģ‚ņ‚Ė˜_•ķ‚ŠMaPSŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Kawasaki, N., Itoh, S., Sakamoto, N., Simon, S.B., Yamamoto, D. and Yurimoto, H. (2021) Oxygen and Al-Mg isotopic constraints on cooling rate and age of partial melting of an Allende Type B CAI, Golfball. Meteorit. Planet. Sci. https://doi.org/10.1111/maps.13701

2021”N6ŒŽ20“ú@â–{’žÆ‚ģ‚ņ‚Ė˜_•ķ‚ŠNature CommunicationsŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Tagawa, S., Sakamoto, N., Hirose, K., Yokoo, S., Hernlund, J., Ohishi, Y. and Yurimoto, H. (2021) Experimental evidence for hydrogen incorporation into Earthfs core. Nature Communications 12, 2588. https://doi.org/10.1038/s41467-021-22035-0

2021”N6ŒŽ9“ú@‘å’ΗI‘ū‚ģ‚ņ‚ĖŒĪ‹†”­•\‚Š‘æ69‰ņŽŋ—Ę•ŠÍ‘‡“Ē˜_‰ï“Ē˜_‰ï‚ɂă|ƒXƒ^[”­•\•”–åÅ—DGÜ‚Æ‚ĩ‚Ä‘Io‚ģ‚ę‚Ü‚ĩ‚―D

2021”N5ŒŽ22“ú@Piani‚ģ‚ņ‚Ė˜_•ķ‚ŠEPSLŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Piani, L., Marrocchi, Y., Vacher, L.G., Yurimoto, H. and Bizzarro, M. (2021) Origin of hydrogen isotopic variations in chondritic water and organics. Earth Planet. Sci. Lett. 567, 117008. https://doi.org/10.1016/j.epsl.2021.117008

2021”N5ŒŽ7“ú@ˆÉ“Ąģˆę‚ģ‚ņ‚Ė˜_•ķ‚ŠMaPSŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Yurimoto, H., Rubin, A. E., Itoh, S. and Wasson, J. T. (2021) A super-refractory inclusion containing nonstoichiometric spinel from the CO3.0 chondrite Yamato 81020. Meteorit. Planet. Sci. https://doi.org/10.1111/maps.13652

2021”N4ŒŽ24“ú@—鑚‚ģ‚ņ‚Ė˜_•ķ‚ŠGCAŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Suzumura, A., Kawasaki, N., Seto, Y., Yurimoto, H. and Itoh, S. (2021) Origin of minerals in akermanite-rich patch texture and oxygen isotopic evolution of compact Type A Ca-Al-rich inclusions from the Northwest Africa 7865 CV chondrite. Geochim. Cosmochim. Acta 303, 51-65. https://doi.org/10.1016/j.gca.2021.03.030

2021”N3ŒŽ10“ú@ᥐķė‚ģ‚ņ‚Ė˜_•ķ‚ŠMaPSŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Kebukawa, Y., Kobayashi, S., Kawasaki, N., Wang, Y., Yurimoto, H. and Cody, G. D. (2021) Hydrogen isotopic exchange kinetics between organic matter and water: Implications for chemical evolution during meteorite parent body processing. Meteorit. Planet. Sci. https://doi.org/10.1111/maps.13629

2021”N3ŒŽ9“ú@Aicheng ZHANG‚ģ‚ņ‚Ė˜_•ķ‚ŠGRLŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Zhang, A.-C., Jiang, Q.-T., Tomioka, N., Guo, Y.-J., Chen, J.-N., Li, Y., Sakamoto, N. and Yurimoto, H. (2021) Widespread Tissintite in Strongly Shock-Lithified Lunar Regolith Breccias. Geophysical Research Letters 48, e2020GL091554. https://doi.org/10.1029/2020GL091554

2021”N2ŒŽ5“ú@˜a“c‘s•―‚ģ‚ņ‚ŠCŽm˜_•ķÅ—DG”­•\Ü‚ðŽóÜ‚ĩ‚Ü‚ĩ‚―.

2020”N11ŒŽ3“ú@Aicheng ZHANG‚ģ‚ņ‚Ė˜_•ķ‚ŠAm. Min.Ž‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Li, J.-Y., Zhang, A.-C., Sakamoto, N., Yurimoto, H. and Gu, L.-X. (2020) A new occurrence of corundum in eucrite and its significance. American Mineralogist 105, 1656-1661.

2020”N10ŒŽ29“ú@Aicheng ZHANG‚ģ‚ņ‚Ė˜_•ķ‚ŠMAPSŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Xiong, Y., Zhang, A.]C., Kawasaki, N., Ma, C., Sakamoto, N., Chen, J.]N., Gu, L.]X. and Yurimoto, H. (2020), Mineralogical and oxygen isotopic study of a new ultrarefractory inclusion in the Northwest Africa 3118 CV3 chondrite. Meteorit Planet Sci. doi:10.1111/maps.13575

2020”N8ŒŽ17“ú@˜a“c‘s•―‚ģ‚ņ‚Ė˜_•ķ‚ŠGCA‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Sohei Wada, Noriyuki Kawasaki, Changkun Park, Hisayoshi Yurimoto (2020) Melilite condensed from an 16O-poor gaseous reservoir: Evidence from a fine-grained Ca-Al-rich inclusion of Northwest Africa 8613. Geochim. Cosmochim. Acta 288, 161-175. https://doi.org/10.1016/j.gca.2020.08.004

2020”N8ŒŽ17“ú@ŽR–{‘å‹M‚ģ‚ņ‚Ė˜_•ķ‚ŠMAPS‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Yamamoto, D., Tachibana, S., Kawasaki, N. and Yurimoto, H. (2020) Survivability of presolar oxygen isotopic signature of amorphous silicate dust in the protosolar disk. Meteorit. Planet. Sci. 55, 1281-1292. https://doi.org/10.1111/maps.13365

2020”N6ŒŽ30“ú@Aicheng ZHANG‚ģ‚ņ‚Ė˜_•ķ‚ŠAm. Min.Ž‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Zhang, A.-C., Pang, R.-L., Sakamoto, N. and Yurimoto, H. (2020) The Cr-Zr-Ca armalcolite in lunar rocks is loveringite: Constraints from electron backscatter diffraction measurements. American Mineralogist 105, 1021|1029.

2020”N4ŒŽ20“ú@ėč‚ģ‚ņ‚Ė˜_•ķ‚ŠGCA‚ÉŒfÚ‚ģ‚ę‚Ü‚ĩ‚―D
Kawasaki, N., Wada, S., Park, C., Sakamoto, N. and Yurimoto, H. (2020) Variations in initial 26Al/27Al ratios among fine-grained Ca-Al-rich inclusions from reduced CV chondrites. Geochim. Cosmochim. Acta 279, 1-15. https://doi.org/10.1016/j.gca.2020.03.045

2020”N3ŒŽ25“ú@‘狯EC—đ@‚Ļ‚ß‚Å‚Æ‚Ī‚ē‚ī‚ǂ܂·D

2020”N3ŒŽ10“ú@Aicheng ZHANG‚ģ‚ņ‚Ė˜_•ķ‚ŠNature CommunicationsŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Zhang, A.-C., Kawasaki, N., Bao, H., Liu, J., Qin, L., Kuroda, M., Gao, J.-F., Chen, L.-H., He, Y., Sakamoto, N. and Yurimoto, H. (2020) Evidence of metasomatism in the interior of Vesta. Nature Communications 11, 1289. https://doi.org/10.1038/s41467-020-15049-7

2020”N2ŒŽ29“ú@š§–{‚ģ‚ņ‚ˉF’ˆŒĪ‚Æ‚ĖƒNƒƒXƒAƒ|ƒCƒ“ƒgƒƒ“ƒgŒ_–ņ‚ŠI—đ‚ĩ‚Ü‚ĩ‚―D‚݂Ȃģ‚܁C‚ ‚肊‚Æ‚Ī‚ē‚ī‚ǂ܂ĩ‚―D

2020”N2ŒŽ29“ú@Aicheng ZHANG‚ģ‚ņ‚Ė˜_•ķ‚ŠGCAŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Zhang, A.-C., Kawasaki, N., Kuroda, M., Li, Y., Wang, H.-P., Bai, X.-N., Sakamoto, N., Yin, Q.-Z. and Yurimoto, H. (2020) Unique angrite-like fragments in a CH3 chondrite reveal a new basaltic planetesimal. Geochim. Cosmochim. Acta 275, 48-63. https://doi.org/10.1016/j.gca.2020.02.014.

2020”N2ŒŽ7“ú@ÎŒEãČá‚ģ‚ņ‚ŠCŽm˜_•ķÅ—DG”­•\Ü‚ðŽóÜ‚ĩ‚Ü‚ĩ‚―D

2019”N11ŒŽ28“ú@ž“c–]‚ģ‚ņ‚Ė˜_•ķ‚ŠGeochemistryŽ‚ɃIƒ“ƒ‰ƒCƒ“‚ɂȂč‚Ü‚ĩ‚―D 
Nozomi Matsuda, Naoya Sakamoto, Shogo Tachibana, Hisayoshi Yurimoto (2019) Heating duration of igneous rim formation on a chondrule in the Northwest Africa 3118 CV3oxA carbonaceous chondrite inferred from micro-scale migration of the oxygen isotopes. Geochemistry, https://doi.org/10.1016/j.chemer.2019.07.006

2019”N11ŒŽ7“ú@˜a“c‘s•―‚ģ‚ņ‚Š“ú–{Žŋ—Ę•ŠÍŠw‰ï 2019”N“x“ŊˆĘ‘˔䕔‰ïÅ—DGƒ|ƒXƒ^[Ü‚ðŽóÜII

2019”N9ŒŽ19“ú@˜a“c‘s•―‚ģ‚ņ‚Š‘æ66‰ņ“ú–{’n‹…‰ŧŠw‰ï”N‰ï‚É‚Ļ‚Ē‚ÄŠwķ§—ãÜ‚ðŽóÜII —Šw•”FB —Šw•”Twitter

2019”N7ŒŽ24“ú@‰i“cN—S‚ģ‚ņ‚Ė˜_•ķ‚ŠApplied Physics ExpressŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Nagata, K., Bajo, K., Itose, S., Matsuya, M., Ishihara, M., Uchino, K. and Yurimoto, H. (2019) Aberration-corrected focused ion beam for time-of-flight secondary neutral mass spectrometry. Applied Physics Express 12, 085005. https://doi.org/10.7567/1882-0786/ab30e4

2019”N7ŒŽ19“ú|20“ú@’n‹…˜fŊ•ĻŽŋ‰ČŠwŽĀK—–žŠņE’†ėŽĀK

2019”N7ŒŽ7“ú|12“ú@‘ÛčĶÎŠw‰ïThe 82nd Annual Meeting of the Meteoritical Society‚ðŽåÃD


2019”N7ŒŽ4“ú@ėč‹ģs‚ģ‚ņ‚Ė˜_•ķ‚ŠGCAŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Bollard, J., Kawasaki, N., Sakamoto, N., Olsen, M., Itoh, S., Larsen, K., Wielandt, D., Schiller, M., Connelly, J. N., Yurimoto, H. and Bizzarro, M. (2019) Combined U-corrected Pb-Pb dating and 26Al-26Mg systematics of individual chondrules | Evidence for a reduced initial abundance of 26Al amongst inner Solar System chondrules. Geochim. Cosmochim. Acta 260, 62-83.

2019”N6ŒŽ11“ú@•“c‚݂Ȃ݂ģ‚ņ‚Ė˜_•ķ‚ŠJGRŽ‚ɏo”Å‚ģ‚ę‚Ü‚ĩ‚―D
Sun, W., Yoshino, T., Kuroda, M., Sakamoto, N., & Yurimoto, H. ( 2019). H|D interdiffusion in single crystal olivine: implications for electrical conductivity in the upper mantle. Journal of Geophysical Research: Solid Earth, 124. https://doi.org/10.1029/2019JB017576

2019”N5ŒŽ26|30“ú@JpGU2019‚Å”­•\‚ĩ‚Ü‚·D
ˆé–ė —Yķ, â–{ ’žÆ, š§–{ Ū‹` (2019) —ޑ˕ï—L•ς˓ŊˆĘ‘Ė•ŠÍ‚Ė‚―‚߂˓€Œ‹SIMS–@‚ĖŠJ”­ [PPS07-P08]
˜a“c ‘s•―, ėč ‹ģs, š§–{ Ū‹` (2019) NWA8613čĶÎ’†‚Ėƒqƒ{ƒiƒCƒg‚ƃƒŠƒ‰ƒCƒg‚É•x‚ލŨ—ą“ïŠö”­Ŧ•ï—L•Ļ‚ĖŽ_‘f“ŊˆĘ‘˕Еz‚ÆAl-Mg”N‘ã [PPS07-P05]
ėč ‹ģs, ƒpƒN ƒ`ƒƒƒ“ƒNƒ“, â–{ ’žÆ, š§–{ Ū‹` (2019) Reduced CVƒRƒ“ƒhƒ‰ƒCƒg‚Ɋ܂܂ę‚éŨ—ąCAI‚Ė‰ķ26Al/27Al”ä‚˕Еz [PPS07-17]
ŽR–{ ‘å‹M, ‹k ČŒá, ėč ‹ģs, •“c ‚݂ȂÝ, â–{ ’žÆ, š§–{ Ū‹` (2019) ”ņŧŽŋƒPƒCŽ_‰–‚Ɛ…ö‹C‚Æ‚ĖŽ_‘f“ŊˆĘ‘ĖŒðŠ·‘Ž“x˜_‚Đ‚į§–ņ‚ģ‚ę‚éŽnŒī“IƒPƒCŽ_‰–ƒ_ƒXƒg‚ĖŒīŽn˜fŊŒn‰~”Ղł˔M“IƒvƒƒZƒX [PCG23-07]
Š`āV ãÄ, ˆäã “O, ˆĒ•” ˆŧ‘ū˜Y, •“c ‚݂ȂÝ, â–{ ’žÆ, š§–{ Ū‹` (2019) Maximum water solubility of bridgmanite under the Earth's lower mantle conditions [SIT21-05]

2019”N4ŒŽ2“ú@ˆé–ė—Yķ‚ģ‚ņ‚Ė˜_•ķ‚ŠGeochemical JournalŽ‚ɏo”Å
Isono, Y., Tachibana, S., Naraoka, H., Francois-ReLgis Orthous-Daunay, Piani, L. and Kebukawa, Y. (2019) Bulk chemical characteristics of soluble polar organic molecules formed through condensation of formaldehyde: Comparison with soluble organic molecules in Murchison meteorite.

2019”N3ŒŽ28“ú@ũ—‰F’ˆŒĪ

2019”N3ŒŽ22“ú@ėč‹ģs‚ģ‚ņ‚Ė˜_•ķ‚ŠChemical Geology Ž‚ɏo”Å
Sas, M., Kawasaki, N., Sakamoto, N., Shane, P., Zellmer, G. F., Kent, A. J. R. and Yurimoto, H. (2019) The ion microprobe as a tool for obtaining strontium isotopes in magmatic plagioclase: A case study at Okataina Volcanic Centre, New Zealand. Chemical Geology 513, 153-166.

2019”N3ŒŽ21“ú@‚Í‚â‚Ô‚ģ‚QƒTƒCƒGƒ“ƒX‰ï‹c—ŒŽ˜fŊ‰ï‹c LPSC50

2019”N3ŒŽ3“ú@•“c‚݂Ȃ݂ģ‚ņ‚Ė˜_•ķ‚ŠAme. Mineral. Ž‚ɏo”Å
Kuroda, M., Tachibana, S., Sakamoto, N. and Yurimoto, H. (2019) Fast diffusion path for water in silica glass. American Mineralogist 104, 385-390.

2019”N2ŒŽ18|20“ú@Solar-System symposium in Sapporo 2019ŠJÃ

2019”N2ŒŽ3“ú@ėč‹ģs‚ģ‚ņ‚Ė˜_•ķ‚ŠEPSLŽ‚ɏo”Å
Kawasaki, N., Park, C., Sakamoto, N., Park, S. Y., Kim, H. N., Kuroda, M. and Yurimoto, H. (2019) Variations in initial 26Al/27Al ratios among fluffy Type A Ca|Al-rich inclusions from reduced CV chondrites. Earth Planet. Sci. Lett. 511, 25-35. https://doi.org/10.1016/j.epsl.2019.01.026

2018”N10ŒŽ3“ú@ŽR–{‘å‹M‚ģ‚ņ‚Ė˜_•ķ‚ŠAstrophysical JournalŽ‚ɏo”Å
Yamamoto, D., Kuroda, M., Tachibana, S., Sakamoto, N. and Yurimoto, H. (2018) Oxygen isotopic exchange between amorphous silicate and water vapor and its implications for oxygen isotopic evolution in the early solar system. Astrophys. J. 865, 98. https://doi.org/10.3847/1538-4357/aadcee

2018”N9ŒŽ28“ú@”nãŒŠˆę‚ģ‚ņ‚Ė˜_•ķ‚ŠSurface and Interface AnalysisŽ‚ɏo”Å
Bajo, K., Fujioka, O., Itose, S., Ishihara, M., Uchino, K. and Yurimoto, H. (2018) Electronic data acquisition and operational control system for time-of-flight sputtered neutral mass spectrometer. Surf. Interface Anal., 1|5. https://doi.org/10.1002/sia.6541.

2018”N9ŒŽ19`21“ú@“ú–{z•Ļ‰ČŠw‰ï2018”N”N‰ï—ŽRŒ`

”‹Œī—Y‹M‚ģ‚ņ‚Š”N‰ïŒĪ‹†”­•\—DGÜ‚ðŽóÜ‚ĩ‚Ü‚ĩ‚―D

2018”N9ŒŽ11|13“ú@“ú–{’n‹…‰ŧŠw‰ï‘æ65‰ņ”N‰ï—‰Ŧ“ę

2018”N8ŒŽ21“ú@L“‡‘åŠwuƒvƒŒ[ƒgŽû‘Đˆæ‚Ė•ĻŽŋ‰ČŠwŒĪ‹†‹’“_v‚Æ‚Ė‹Ī“ŊŒĪ‹†‚ŠƒAƒƒŠƒJz•ĻŠw‰ïŽ‚Ė’–Ú˜_•ķ‚É‘Io‚ģ‚ę‚Ü‚ĩ‚―D
Kakizawa, S., Inoue, T., Nakano, H., Kuroda, M., Sakamoto, N. and Yurimoto, H. (2018) Stability of Al-bearing superhydrous phase B at the mantle transition zone and the uppermost lower mantle. American Mineralogist 103, 1221-1227.

2018”N8ŒŽ1“ú@•“c‚݂Ȃ݂ģ‚ņ‚Š2018”N˜A‡‘å‰ï Šwķ—DG”­•\Ü‚ðŽóÜ‚ĩ‚Ü‚ĩ‚―D

2018”N7ŒŽ13-14“ú@’n‹…˜fŊ•ĻŽŋ‰ČŠwŽĀK—–žŠņE’†ėŽĀK

2018”N6ŒŽ28“ú@Leica‚É‚æ‚éš§–{‹ģŽö‚Ö‚ĖƒCƒ“ƒ^ƒ”ƒ…[‚ŠŒfÚ‚ģ‚ę‚Ü‚ĩ‚―

2018”N5ŒŽ30“ú@Ž—Ņq‘å‚ģ‚ņ‚Š—Šw‰@—DGŒĪ‹†§—ãÜ‚ðŽóÜ‚ĩ‚Ü‚ĩ‚―

2018”N5ŒŽ20-24“ú@JpGU2018‚É‚ÄŒĪ‹†”­•\‚ĩ‚Ü‚ĩ‚―
[PPS06-P03] Fe-FeS‹Īŧ‘gD‚ð—p‚Ē‚―ƒRƒ“ƒhƒŠƒ…[ƒ‹‚Ė—â‹p‘Ž“x„’č
[SIT19-P02] Î‰pƒKƒ‰ƒX‚ɂςŊ‚鐅‚Ė‚‘ŽŠgŽU
[PPS09-10] ŒīŽn‘ū—zŒn‰~”Ղł˔ņŧŽŋƒPƒCŽ_‰–ƒ_ƒXƒg‚Ɛ…ö‹C‚Æ‚ĖŽ_‘f“ŊˆĘ‘ĖŒðŠ·”―‰ž
[PPS09-11] ŒīŽn˜fŊŒn‰~”Ղł˔ņŧŽŋƒGƒ“ƒXƒ^ƒ^ƒCƒgƒ_ƒXƒg‚ĖŒ‹ŧ‰ŧ
[PPS06-08] ƒzƒ‹ƒ‚[ƒXŒ^”―‰ž‚É‚æ‚Á‚ÄķŽ‚·‚é‰Â—nŦ—L‹@•ŠŽq‚Ė“Á’Ĩ‚Æ”―‰ž‹@\
[PPS06-13] CAI‘gŽƒƒ‹ƒg‚Ė’áˆģ…‘fƒKƒX’†A^‹ó’†ö”­ŽĀŒą

2018”N3ŒŽ28“ú@ũ—‰F’ˆŒĪ

2018”N3ŒŽ22“ú@‘狯C—đ‚Ļ‚ß‚Å‚Æ‚Ī‚ē‚ī‚ǂ܂·

2018”N3ŒŽ6“ú@•“c‚ģ‚ņ‚Ė˜_•ķ‚ŠAme. Min. ‚ɏo”Å
Kuroda, M., Tachibana, S., Sakamoto, N., Okumura, S., Nakamura, M. and Yurimoto, H. (2018) Water diffusion in silica glass through pathways formed by hydroxyls. American Mineralogist 103, 412-417.

2018”N3ŒŽ1“ú|4“ú@Jim Greenwood‹ģŽöC‰i“‡ˆęG”ŽŽmCˆÉ“Ąģˆęy‹ģŽö —ˆ–K

2018”N3ŒŽ1“ú|2“ú@Bernerd Marty‹ģŽöCJim Lyons‹ģŽö —ˆ–K

2018”N3ŒŽ1“ú@ė핋ģs•‹ģ‚Š•‹”C

2018”N2ŒŽ26“ú|28“ú@Solar System Symposium in Sapporo (3S 2018)

2018”N2ŒŽ8“ú@P—áá‚܂‚čƒcƒA[

2018”N1ŒŽ13“ú@@‹īŒû‚ģ‚ņ‚Ė˜_•ķ‚ŠEPSL‚ɏo”Å
Fei, H., Koizumi, S., Sakamoto, N., Hashiguchi, M., Yurimoto, H., Marquardt, K., Miyajima, N. and Katsura, T. (2018) Mg lattice diffusion in iron-free olivine and implications to conductivity anomaly in the oceanic asthenosphere. Earth Planet. Sci. Lett. 484, 204-212.

2017”N12ŒŽ29“ú@â–{‚ģ‚ņ‚Ė˜_•ķ‚ŠEPSL‚ɏo”Å
Sun, W., Yoshino, T., Sakamoto, N. and Yurimoto, H. (2018) Supercritical fluid in the mantle transition zone deduced from H|D interdiffusion of wadsleyite. Earth Planet. Sci. Lett. 484, 309-317.

2017”N12ŒŽ27“ú@ž–{“O‚ģ‚ņi‰F’ˆŒĪj‚Ė˜_•ķ‚ŠIcarus‚ɏo”Å
Matsumoto, T., Hasegawa, S., Nakao, S., Sakai, M. and Yurimoto, H. (2018) Population characteristics of submicrometer-sized craters on regolith particles from asteroid Itokawa. Icarus 303, 22-33.

2017”N12ŒŽ22“ú@â–{‚ģ‚ņ‚Ė˜_•ķ‚ŠPEPI‚ɏo”Å
Fei, H., Wiedenbeck, M., Sakamoto, N., Yurimoto, H., Yoshino, T., Yamazaki, D. and Katsura, T. (2018) Negative activation volume of oxygen self-diffusion in forsterite. Phys. Earth Planet. Inter. 275, 1-8.

2017”N12ŒŽ13“ú@ėč‹ģs‚ģ‚ņ‚Ė˜_•ķ‚Š GCA ‚ɏo”Å
Kawasaki, N., Simon, S. B., Grossman, L., Sakamoto, N. and Yurimoto, H. (2018) Crystal growth and disequilibrium distribution of oxygen isotopes in an igneous Ca-Al-rich inclusion from the Allende carbonaceous chondrite. Geochim. Cosmochim. Acta 221, 318-341.

2017”N12ŒŽ1“ú@Ai-Cheng Zhang‚ģ‚ņ‚Ė˜_•ķ‚Š GCA ‚ɏo”Å
Zhang, A.-C., Bu, Y.-F., Pang, R.-L., Sakamoto, N., Yurimoto, H., Chen, L.-H., Gao, J.-F., Du, D.-H., Wang, X.-L. and Wang, R.-C. (2018) Origin and implications of troilite-orthopyroxene intergrowths in the brecciated diogenite Northwest Africa 7183. Geochim. Cosmochim. Acta 220, 125-145.

2017”N11ŒŽ6“ú@‹k‚ģ‚ņ‚Ė˜_•ķ‚ŠSCIENCE ADVANCES‚ɏo”Å
Takigawa, A., Kamizuka, T., Tachibana, S. and Yamamura, I. (2017) Dust formation and wind acceleration around the aluminum oxide|rich AGB star W Hydrae. Science Advances 3, no. 11, eaao2149.

2017”N10ŒŽ1“ú@‹k‚ģ‚ņ‚Š“Œ‹ž‘åŠw—ŠwŒnŒĪ‹†‰Č‹ģŽö‚ÉˆŲ“Ū‚ĩ‚Ü‚ĩ‚―D

2017”N9ŒŽ30“ú@‹k‚ģ‚ņ‚Ė˜_•ķ‚ŠSCIENCE ADVANCES‚ɏo”Å
Tachibana, S., Kouchi, A., Hama, T., Oba, Y., Piani, L., Sugawara, I., Endo, Y., Hidaka, H., Kimura, Y., Murata, K.-i., Yurimoto, H. and Watanabe, N. (2017) Liquid-like behavior of UV-irradiated interstellar ice analog at low temperatures. Science Advances 3, eaao2538.

2017”N9ŒŽ26“ú|29“ú@3GŽl‘‡hi‚’mƒRƒAŒĪŒĐŠwCƒZƒ~ƒi[CŽO”gė‘Ņ„ŒŸCˆĪ•Q‘åGRCŒĐŠwj

2017”N7ŒŽ25“ú@š§–{‹ģŽö‚ЁuŽD–yl}ŠÓv‚ɏo‰‰

2017”N7ŒŽ14-15“ú@’n‹…˜fŊ•ĻŽŋ‰ČŠwŽĀK—–žŠņE’†ėŽĀK

2017”N7ŒŽ7“ú|11“ú@James Greenwood‹ģŽö (Wesleyan University) —ˆ–KE‘؍Ý

2017”N6ŒŽ28“ú@Ed Young‹ģŽö (UCLA) —ˆ–K

2017”N6ŒŽ19“ú|27“ú@Georg Zellmer‹ģŽö (Massey University) —ˆ–KE‘؍Ý

2017”N6ŒŽ2“ú@ėč‹ģs‚ģ‚ņ‚Ė˜_•ķ‚ŠGCA‚ÉŽó—
Noriyuki Kawasaki, Steven B. Simon, Lawrence Grossman, Naoya Sakamoto, Hisayoshi Yurimoto (2017) Crystal growth and disequilibrium distribution of oxygen isotopes in an igneous Ca-Al-rich inclusion from the Allende carbonaceous chondrite. Geochimica et Cosmochimica Acta. doi: 10.1016/j.gca.2017.05.035

2017”N5ŒŽ28“ú@‹g‘šr•―‚ģ‚ņ‚Ė˜_•ķ‚ŠGJ‚ɏo”Å
Yoshimura, S., Nakamura, M. and Yurimoto, H. (2017) Carbonate ions in high-SiO2 rhyolite observed in fluid-melt equilibrium experiments. Geochem. J. 51, 251-262. doi:10.2343/geochemj.2.0466

2017”N5ŒŽ15“ú|6ŒŽ9“ú@–pđŠ”ŽŽm (KOPRI)—ˆ–KE‘؍Ý

2017”N5ŒŽ16“ú@‘nŽ‰ČŠwŒĪ‹†“‚Ė•”‰Ū‚ð‚QŠK‚Ɉø‰z@02-320, -321Žš

2017”N5ŒŽ8“ú@–kƒAƒ‹ƒvƒX

2017”N4ŒŽ3“ú@Vƒƒ“ƒo[‚ЉÁ“ü‚ĩ‚Ü‚ĩ‚―D

2017”N3ŒŽ23“ú@‘狯C—đ‚Ļ‚ß‚Å‚Æ‚Ī‚ē‚ī‚ǂ܂·D

2017”N3ŒŽ‚Q“ú@ėč‹ģs‚ģ‚ņ‚Ė˜_•ķ‚ŠGCA‚ɏo”Å
Noriyuki Kawasaki, Shoichi Itoh, Naoya Sakamoto, Hisayoshi Yurimoto (2017) Chronological study of oxygen isotope composition for the solar protoplanetary disk recorded in a fluffy Type A CAI from Vigarano. Geochimica et Cosmochimica Acta 201, 83-102. doi: 10.1016/j.gca.2015.12.031

2017”N3ŒŽ1“ú@Laurette Piani‚ģ‚ņC‹kČŒá‚ģ‚ņC›Œī‚Ē‚æ‚ģ‚ņCš§–{Ū‹`‚ģ‚ņ‚Ė˜_•ķ‚ŠApJ‚ɏo”Å
Piani L., Tachibana S., Hama T., Tanaka H., Endo Y., Sugawara I., Dessimoulie L., Kimura Y., Miyake A., Matsuno J., Tsuchiyama A., Fujita K., Nakatsubo S., Fukushi H., Mori S., Chigai T., Yurimoto H. and Kouchi A. (2017) Evolution of morphological and physical properties of laboratory interstellar organic residues with ultraviolet irradiation. Astrophysical Journal, 837:35 DOI: 10.3847/1538-4357/aa5ca6

2017”N2ŒŽ27“ú@‰F’ˆŒĪG“ƒIƒtƒBƒX

2017”N2ŒŽ13-15“ú@Solar System Symposium in Sapporo 2017 (3S 2017)

2017”N2ŒŽ7“ú@P—áá‚܂‚čƒEƒH[ƒNƒcƒA[

2017”N2ŒŽ7“ú@”ŽŽm˜_•ķÅIRļiˆĒ•”Œ›ˆęC“a’Jˆēj

2017”N2ŒŽ5“ú@ˆĒ•”Œ›ˆę‚ģ‚ņ‚Ė˜_•ķ‚ŠGJ‚ɏo”Å
Abe, K., Sakamoto, N., Krot, A. N. and Yurimoto, H. (2017) Occurrences, abundances, and compositional variations of cosmic symplectites in the Acfer 094 ungrouped carbonaceous chondrite. Geochemical Journal, 51, 3-15. doi:10.2343/geochemj.2.0454

2017”N2ŒŽ5“ú@–öˆä‰Ā•ä—Ē‚ģ‚ņCâ–{’žÆ‚ģ‚ņ‚Ė˜_•ķ‚ŠGJ‚ɏo”Å
Singer, J. A., Greenwood, J. P., Itoh, S., Sakamoto, N. and Yurimoto, H. (2017) Evidence for the solar wind in lunar magmas: A study of slowly cooled samples of the Apollo 12 olivine basalt suite. Geochem. J. 51, 95-104. doi:10.2343/geochemj.2.0462
Greenwood, J. P., Sakamoto, N., Itoh, S., Warren, P. H., Singer, J. A., Yanai, K. and Yurimoto, H. (2017) The lunar magma ocean volatile signature recorded in chlorine-rich glasses in KREEP basalts 15382 and 15386. Geochem. J. 51, 105-114. doi:10.2343/geochemj.2.0453

2017”N1ŒŽ6“ú`2ŒŽ24“ú@Georg Zellmer‹ģŽöiMassey‘åŠwj‘؍Ý

2017”N1ŒŽ5“ú@Ž—ŅK—Y‚ģ‚ņ‚Ė˜_•ķ‚ŠJHC‚ɏo”Å
Hongo, H., Sasaki, M., Kobayashi, S., Hasegawa, T., Yamamoto, T., Tsuboi, K., Tsuchiya, E., Nagai, T., Khadiza, N., Abe, M., Kudo, A., Oda, K., Henrique Luiz de Freitas, P., Li, M., Yurimoto, H. and Amizuka, N. (2016) Localization of minodronate in mouse femora through isotope microscopy. Journal of Histochemistry & Cytochemistry 64, 601-622.

2016”N12ŒŽ18“ú@ˆĒ•”Œ›ˆę‚ģ‚ņ‚Ė˜_•ķ‚ŠGeochem. J. ‚ɃI[ƒvƒ“ƒAƒNƒZƒX
Kenichi Abe, Naoya Sakamoto, Alexander N. Krot, and Hisayoshi Yurimoto (2017) Occurrences, abundances, and compositional variations of cosmic symplectites in the Acfer 094 ungrouped carbonaceous chondrite. Geochemical Journal, Vol. 51. doi:10.2343/geochemj.2.0454

2016”N12ŒŽ18“ú@â–{’žÆ‚ģ‚ņ‚Ė˜_•ķ‚ŠEPSL‚ɏo”Å
Xu, F., Yamazaki, D., Sakamoto, N., Sun, W., Fei, H. and Yurimoto, H. (2017) Silicon and oxygen self-diffusion in stishovite: Implications for stability of SiO2-rich seismic reflectors in the mid-mantle. Earth Planet. Sci. Lett. 459, 332-339.

2016”N11ŒŽ15“ú@Laurette Piani‚ģ‚ņ‚Ė˜_•ķ‚ŠGCA‚ɏo”Å
Piani L., Marrocchi Y., Libourel G., Tissandier L. (2016) Magmatic sulfides in the porphyritic chondrules of EH enstatite chondrites. Geochimica et Cosmochimica Acta 195, 84-99. DOI: 10.1016/j.gca.2016.09.010

2016”N11ŒŽ6“ú@“a’J‚ģ‚ņC”nã‚ģ‚ņ‚Ė˜_•ķ‚ŠSIA‚ɏo”Å
Evaluation of multi-turn time-of-flight mass spectrum of laser ionization mass nanoscope DOI: 10.1002/sia.6112
High spatial resolution imaging of helium isotope by TOF-SNMS DOI: 10.1002/sia.6085
Quantitative analysis of helium by post-ionization method using femtosecond laser technique DOI: 10.1002/sia.6119

2016”N10ŒŽ13“ú@‹kČŒá‚ģ‚ņ‚Ė˜_•ķ‚Š Space Science Reviews ‚ɏo”Å
Okazaki, R., Sawada, H., Yamanouchi, S., Tachibana, S., N. Miura, Y., Sakamoto, K., Takano, Y., Abe, M., Itoh, S., Yamada, K., Yabuta, H., Okamoto, C., Yano, H., Noguchi, T., Nakamura, T., Nagao, K. and The Hayabusa2 SMP Team (2016) Hayabusa2 Sample Catcher and Container: Metal-Seal System for Vacuum Encapsulation of Returned Samples with Volatiles and Organic Compounds Recovered from C-Type Asteroid Ryugu. DOI: 10.1007/s11214-016-0289-5

2016”N9ŒŽ29“ú@Ai-Cheng Zhang‚ģ‚ņ‚Ė˜_•ķ‚Š Nature Communications ‚ɏo”Å
Zhang, A.-C., Li, Q.-L., Yurimoto, H., Sakamoto, N., Li, X.-H., Hu, S., Lin, Y.-T. and Wang, R.-C. (2016) Young asteroidal fluid activity revealed by absolute age from apatite in carbonaceous chondrite. Nature Communications 7, 12844.

2016”N9ŒŽ28“ú@ž“c‚ģ‚ņ‚Ė˜_•ķ‚Š Front. Earth Sci. ‚ɏo”Å
Zellmer, G. F., Sakamoto, N., Hwang, S., Matsuda, N., Iizuka, Y., Moebis, A. and Yurimoto, H. (2016) Inferring the effects of compositional boundary layers on crystal nucleation, growth textures, and mineral chemistry in natural volcanic tephras through submicron-resolution imaging. Frontiers in Earth Science 4, 88. doi: 10.3389/feart.2016.00088.

2016”N9ŒŽ1“ú@“a’J‚ģ‚ņC”nã‚ģ‚ņ‚Ė˜_•ķ‚ŠSIA‚ɃIƒ“ƒ‰ƒCƒ“o”Å
Evaluation of multi-turn time-of-flight mass spectrum of laser ionization mass nanoscope DOI: 10.1002/sia.6112
High spatial resolution imaging of helium isotope by TOF-SNMS DOI: 10.1002/sia.6085
Quantitative analysis of helium by post-ionization method using femtosecond laser technique DOI: 10.1002/sia.6119

2016”N7ŒŽ17“ú@Laurette Piani‚ģ‚ņ‚Ė˜_•ķ‚ŠScience Advances‚ɏo”Å
Marrocchi Y., Chaussidon M., Piani L., Libourel G. (2016) Early scattering of the solar protoplanetary disk recorded in meteoritic chondrules. Sci. Adv. 2, e1601001. doi: 10.1126/sciadv.1601001.

2016”N6ŒŽ30“ú@‹kČŒá‚ģ‚ņ‚ĖƒvƒŒƒiƒŠ[ ƒKƒXƒgƒŒƒNƒNƒ`ƒƒ[—ƒS[ƒ‹ƒhƒVƒ…ƒ~ƒbƒg‰ï‹c

2016”N6ŒŽ26-7ŒŽ1“ú@Goldschmidt at Yokohama‚ÉŽQ‰Á‚ĩ‚Ü‚·D
‹k‚ģ‚ņ, Piani‚ģ‚ņ, ”nã‚ģ‚ņ, “a’J‚ģ‚ņ, ŽR–{‚ģ‚ņ, •“c‚ģ‚ņ, Ž—ŅŒN

2016”N6ŒŽ10“ú@â–{‚ģ‚ņCž“c‚ģ‚ņ‚Ė˜_•ķ‚ŠGCA‚ɏo”Å
Zellmer G. F., Sakamoto N., Matsuda N., Iizuka Y., Moebis A. and Yurimoto H. (2016) On progress and rate of the peritectic reaction Fo + SiO2 Ļ En in natural andesitic arc magmas. Geochim. Cosmochim. Acta, 185, 383|393.

2016”N‚UŒŽ‚S“ú@Ą“ú‚Í‘åŠwÕDŒĪ‹†Žš‚Ėˆę”ĘŒöŠJ‚â‚Á‚Ă܂·I

2016”N5ŒŽ22-26“ú@JpGU@–‹’Ģ‚ÉŽQ‰Á

2016”N5ŒŽ16“ú@Ai-Cheng Zhang‚ģ‚ņ‚Ė˜_•ķ‚ŠScientific Reports‚ɏo”Å
Pang, R.-L., Zhang, A.-C., Wang, S.-Z., Wang, R.-C. and Yurimoto, H. (2016) High-pressure minerals in eucrite suggest a small source crater on Vesta. Scientific Reports 6, 26063.

2016”N4ŒŽ21“ú@œAˆäæķ—ˆ–K

2016”N4ŒŽ6“ú@ũ—‰F’ˆŒĪ

2016”N4ŒŽ1“ú@Vƒƒ“ƒo[‚Š‘―”‰Á“ü‚ĩ‚Ü‚ĩ‚―

2016”N3ŒŽ24“ú@‚ē‘狯‚Ļ‚ß‚Å‚Æ‚Ī‚ē‚ī‚ǂ܂·

2016”N3ŒŽ21“ú@NASAƒWƒ‡ƒ“ƒ\ƒ“ƒXƒy[ƒXƒZƒ“ƒ^[ƒAƒ|ƒŒŽŽŽ—ŋ•ÛŠĮŒÉ“™ƒLƒ…ƒŒ[ƒVƒ‡ƒ“Ž{Ý‚ĖŒĐŠw

2016”N2ŒŽ10“ú@ėč‚ģ‚ņ‚Ė˜_•ķ‚ŠGCA‚Ɉóü’†
Kawasaki N., Itoh S., Sakamoto N. and Yurimoto H. (2016) Chronological study of oxygen isotope composition for the solar protoplanetary disk recorded in a fluffy Type A CAI from Vigarano. Geochim. Cosmochim. Acta. doi:10.1016/j.gca.2015.12.031

2016”N1ŒŽ21“ú@â–{‚ģ‚ņCž“c‚ģ‚ņ‚Ė˜_•ķ‚ŠGCA‚Ɉóü’†
Zellmer G. F., Sakamoto N., Matsuda N., Iizuka Y., Moebis A. and Yurimoto H. (2016) On progress and rate of the peritectic reaction Fo + SiO2 Ļ En in natural andesitic arc magmas. Geochim. Cosmochim. Acta.

2016”N1ŒŽ10“ú@Ai-Cheng Zhang‚ģ‚ņ‚Ė˜_•ķ‚ŠMAPS‚ɏo”Å
Zhang, A. -C., Itoh, S., Yurimoto, H., Hsu, W. -B., Wang, R. -C. and Taylor, L. A. (2016) P-O-rich sulfide phase in CM chondrites: Constraints on its origin on the CM parent body. Meteorit. Planet. Sci. 51, 56-69.

2016”N1ŒŽ9“ú@Piani‚ģ‚ņ‚Ė˜_•ķ‚ŠEPSL‚ɏo”Å
Remusat, L., Piani, L. and Bernard, S. (2016) Thermal recalcitrance of the organic D-rich component of ordinary chondrites. Earth and Planetary Science Letters 435, 36-44.

2016”N1ŒŽ1“ú@2106”NÅ‰‚Ė˜_•ķ‚Šo”Å
Fei, H., Koizumi, S., Sakamoto, N., Hashiguchi, M., Yurimoto, H., Marquardt, K., Miyajima, N., Yamazaki, D. and Katsura, T. (2016) New constraints on upper mantle creep mechanism inferred from silicon grain-boundary diffusion rates. Earth Planet. Sci. Lett. 433, 350-359. doi:10.1016/j.epsl.2015.11.014.

2015”N12ŒŽ31“ú@2015”NÅŒã‚Ė˜_•ķ‚Šo”Å
Chang, Y.-Y., Jacobsen, S.D., Bina, C.R., Thomas, S.-M., Smyth, J.R., Frost, D.J., Ballaran, T.B., McCammon, C.A., Hauri, E.H., Inoue, T., Yurimoto, H., Meng, Y. and Dera, P. (2015) Comparative compressibility of hydrous wadsleyite and ringwoodite: Effect of H2O and implications for detecting water in the transition zone. J. Geophys. Res. Solid Earth 120, doi:10.1002/2015JB012123.
Cai, N., Inoue, T., Fujino, K., Ohfuji, H. and Yurimoto, H. (2015) A possible new Al-bearing hydrous Mg-silicate (23 A‹ phase) in the deep upper mantle. American Mineralogist 100, 2330-2335.

2015”N10ŒŽ30“ú[11ŒŽ4“ú@Andy Davis‹ģŽö—ˆ–K

2015”N10ŒŽ22“ú@‘nŽŒĪ‹†‹@\–hÐŒP—ûD–ģŽ–‹~o‚ģ‚ę‚Ü‚ĩ‚―D

2015”N9ŒŽ24“ú@”nã‚ģ‚ņ‚Ė˜_•ķ‚ŠGJŽ‚ɏo”Å
Bajo, K.-i., Olinger, C. T., Jurewicz, A. J. G., Burnett, D. S., Sakaguchi, I., Suzuki, T., Itose, S., Ishihara, M., Uchino, K., Wieler, R. and Yurimoto, H. (2015) Depth profiling analysis of solar wind helium collected in diamond-like carbon film from Genesis. Geochem. J. 49, 559-566. doi:10.2343/geochemj.2.0385.

2015”N9ŒŽ19“ú@â–{‚ģ‚ņ‚Ė˜_•ķ‚ŠGRLŽ‚ɏo”Å
Sun, W., Yoshino, T., Sakamoto, N. and Yurimoto, H. (2015) Hydrogen self-diffusivity in single crystal ringwoodite: Implications for water content and distribution in the mantle transition zone. Geophys. Res. Lett. 42, 6582|6589.

2015”N8ŒŽ31“ú@ėč‚ģ‚ņ‚Ė˜_•ķ‚ŠGCAŽ‚ɏo”Å
Kawasaki N., Kato C., Itoh S., Wakaki S., Ito M. and Yurimoto H. (2015) 26Al-26Mg chronology and oxygen isotope distributions of multiple melting for a Type C CAI from Allende. Geochim. Cosmochim. Acta. 169, 99-114.

2015”N7ŒŽ26-31“ú@čĶÎŠw‰ï—ƒo[ƒNƒŒ[

2015”N7ŒŽ22“ú@‹īŒû‚ģ‚ņ‚Ė˜_•ķ‚ŠGJŽ‚ɃI[ƒvƒ“ƒAƒNƒZƒXo”Å‚ģ‚ę‚Ü‚ĩ‚―
Hashiguchi, M., Kobayashi, S. and Yurimoto, H. (2015) Deuterium- and 15N-signatures of organic globules in Murchison and Northwest Africa 801 meteorites. Geochemical Journal 49 (No. 4), 377-391, doi:10.2343/geochemj.2.0363.

2015”N7ŒŽ17-18“ú@’n‹…˜fŊ•ĻŽŋ‰ČŠwŽĀK—‚Č‚æ‚ë“V•ķ‘ä@“ú’†‚Ė‹āŊŠÏ‘Š

2015”N6ŒŽ24“ú@‘—•ʉï@BBQ

2015”N6ŒŽ6“ú@‘nŽŒĪ‹†‹@\ˆę”ĘŒöŠJDŒÄ‚Ņž‚Ý‚Ī‚Ü‚­‚Č‚č‚Ü‚ĩ‚―I

2015”N6ŒŽ6“ú@‹īŒû‚ģ‚ņ‚Ė˜_•ķ‚ŠGJŽ‚ɃI[ƒvƒ“ƒAƒNƒZƒXŽó—‚ģ‚ę‚Ü‚ĩ‚―
Hashiguchi, M., Kobayashi, S. and Yurimoto, H. (2015) Deuterium- and 15N-signatures of organic globules in Murchison and Northwest Africa 801 meteorites. Geochemical Journal 49, doi:10.2343/geochemj.2.0363.

2015”N6ŒŽ1-27“ú@Aicheng ZHANG‹ģŽöi“ė‹ž‘åŠwj‚Š‘ØÝ

2015”N5ŒŽ24-26“ú@JpGU2015‚ÉŽQ‰Á‚ĩ‚Ü‚ĩ‚―

2015”N5ŒŽ18“ú@Ai-Cheng Zhang‚ģ‚ņ‚Ė˜_•ķ‚ŠGCAŽ‚ɏo”Å
Zhang, A.-C., Ma, C., Sakamoto, N., Wang, R.-C., Hsu, W.-B. and Yurimoto, H. (2015) Mineralogical anatomy and implications of a Ti|Sc-rich ultrarefractory inclusion from Sayh al Uhaymir 290 CH3 chondrite. Geochim. Cosmochim. Acta. 163, 27-39.

2015”N4ŒŽ1“ú@Vƒƒ“ƒo[‚Š‘―”‰Á“üII

2015”N4ŒŽ1“ú@Laurette PIANI uŽt’…”C

2015”N3ŒŽ27“ú@Harold C Connolly Jr ‹ģŽö’…”C

2015”N3ŒŽ25“ú@‚ē‘狯‚Ļ‚ß‚Å‚Æ‚Ī‚ē‚ī‚ǂ܂·

2015”N3ŒŽ1“ú@JSTƒTƒCƒGƒ“ƒXƒ`ƒƒƒ“ƒlƒ‹u‚Í‚â‚Ô‚ģ2‚ð‘Ō‚Âv‚ˉpŒę”Å‚ŠŒöŠJ‚ģ‚ę‚Ü‚ĩ‚―

2015”N2ŒŽ16“ú@Laurette Piani‚ģ‚ņ‚Ė˜_•ķ‚ŠEPSLŽ‚ɏo”Å
Piani, L., Robert, F. and Remusat, L. (2015) Micron-scale D/H heterogeneity in chondrite matrices: A signature of the pristine solar system water? Earth Planet. Sci. Lett. 415, 154-164.

2015”N2ŒŽ14“ú@ƒ”ƒ@ƒŒƒ“ƒ^ƒCƒ“ƒf[

2015”N2ŒŽ6“ú@P—áá‚܂‚čƒEƒH[ƒNƒcƒA[

2015”N1ŒŽ29“ú@ėč‹Is‚­‚ņ”ŽŽm˜_•ķŒöŠJ”­•\‰ï

2014”N12ŒŽ24“ú@ƒCƒgƒJƒŽŽ—ŋ‚æ‚č‘ū—z•—He‰ŒŸoI

2014”N12ŒŽ15“ú@Geochemical Journal ‹k•ŌW“ÁW†‚Šo”Å
Preface: Evolution of refractory grains, volatiles, and organic molecules from the interstellar medium to the early solar system (Shogo Tachibana, Henner Busemann and Lydie Bonal)
Hayabusa2: Scientific importance of samples returned from C-type near-Earth asteroid (162173) 1999 JU3 (Tachibana et al.)
Isotopic compositions of asteroidal liquid water trapped in fluid inclusions of chondrites (Yurimoto et al.)

2014”N12ŒŽ10“ú@ėč‹ģs‚­‚ņ”Ž˜_—\”õRļ‚ɃpƒX

2014”N12ŒŽ9“ú@LIMAS•œŠˆ

2014”N12ŒŽ5“ú@VƒtƒFƒ€ƒg•bƒŒ[ƒU[‚Ė”[“ü

2014”N12ŒŽ3“ú@‚Í‚â‚Ô‚ģ‚Q‘Å‚ŋã‚°—ŽíŽq“‡@ƒpƒuƒŠƒbƒNƒrƒ…[ƒCƒ“ƒO@–k‘唎•ĻŠŲ

2014”N11ŒŽ29“ú - 2015”N1ŒŽ21“ú@Georg F. Zellmer”ŽŽm (Massey‘åŠw) ‘؍Ý

2014”N11ŒŽ27“ú@‹kČŒá‚ģ‚ņ@NHK ƒNƒ[ƒYƒAƒbƒvŒŧ‘ã ‚Í‚â‚Ô‚ģ2 ķ–―‚Ė‹NŒđ‚ð’T‚é—· ‚ɏo‰‰

2014”N11ŒŽ7“ú@â–{’žÆ‚ģ‚ņ‚Ė˜_•ķ‚ŠEnvironmental Science & TechnologyŽ‚ɏo”Å
Isotope Microscopy Visualization of the Adsorption Profile of 2-Methylisoborneol and Geosmin in Powdered Activated Carbon

2014”N11ŒŽ7“ú@â–{’žÆ‚ģ‚ņ‚Š‘æ10‰ņŠwÛ—Ėˆæ‚ɂςŊ‚镊ŽqƒCƒ[ƒWƒ“ƒOƒtƒH[ƒ‰ƒ€‚ɂďĩ‘Ōu‰‰

2014”N10ŒŽ21“ú@‹k@ČŒá‚ģ‚ņ‚Ė‚Í‚â‚Ô‚ģ‚Q‹LŽ–

2014”N10ŒŽ10“ú@@UCLA

2014”N10ŒŽ8“ú@@CalTech

2014”N10ŒŽ7-9“ú@NASA Genesis 10Žü”NW‰ï—JPL

2014”N9ŒŽ8-13“ú@čĶÎŠw‰ï—ƒJƒTƒuƒ‰ƒ“ƒJ

2014”N7ŒŽ18-19“ú@’n‹…˜fŊ•ĻŽŋ‰ČŠwŽĀK‚ÅŠwķ‚Æ‚Č‚æ‚ëŽs—§“V•ķ‘ä‚Ö
@@@@@@@@@@ŠÏ–]‰ï‚ł͓yŊ‚Š‚Ŧ‚ę‚Ē‚É‚Ý‚Ķ‚Ü‚ĩ‚―

2014”N7ŒŽ7“ú@‚Í‚â‚Ô‚ģ”ũ—ąŽqØ’f”äŠr˜_•ķ‚ŠMAPS‚ÉŒfÚ
Investigation of cutting methods for small samples of Hayabusa and future sample return missions

2014”N6ŒŽ19-20“ú@SIMS‘Û‰ï‹c‚ðŠJÃ
The Scientific International Symposium on SIMS and Related Techniques Based on Ion-Solid Interactions (SISS16)

2014”N6ŒŽ8-13“ú@Goldschmidt 2014‚ɏoČCCA•t‰Á‘Ņ„ŒŸ

2014”N5ŒŽ27“ú@‹k‚ģ‚ņ‚Ė˜_•ķ‚ŠSCIENTIFIC REPORTS‚ÉŒfÚ
A new X-ray fluorescence spectroscopy for extraterrestrial materials using a muon beam

2014”N5ŒŽ19-23“ú@’Ģ‚ģ‚ņ‚Ė“ė‹ž‘åŠw‚ð–K–â

2014”N4ŒŽ27“ú-5ŒŽ2“ú@EGU 2014oČ

2014”N4ŒŽ03“ú@‹k‚ģ‚ņ‚Ė˜_•ķ‚ŠIcarus‚ÉŒfÚ
Composition of the lunar magma ocean constrained by the conditions for the crust formation

2014”N4ŒŽ02-03“ú@ŒĪ‹†ŽšƒXƒL[2014—ƒgƒ}ƒ€

2014”N4ŒŽ01“ú@Ą”N‚āV‚S”NķEV‘åŠw‰@ķ‚ЉÁ“üI

2014”N4ŒŽ01“ú@ᥐķė(–]ŒŽ)—zŽq‚ģ‚ņ‚ЉĄ•l‘—§‘åŠw‘åŠwy‹ģŽö‚ɏļ”CD‚Ļ‚ß‚Å‚Æ‚Ī‚ē‚ī‚ǂ܂·

2014”N3ŒŽ25“ú@C—đE‘狯‚Ļ‚ß‚Å‚Æ‚Ī‚ē‚ī‚ǂ܂·D

2014”N3ŒŽ25“ú@•“c‚݂Ȃ݂ģ‚ņ‚Б狯ŽŪ—Šw•”‘‘ã

2014”N3ŒŽ24“ú@•“c‚݂Ȃ݂ģ‚ņ‚ŠƒNƒ‰[ƒNÜŽóÜ

2014”N3ŒŽ21“ú@â–{‚ģ‚ņ‚Ė˜_•ķ‚ŠNew Phytologist‚ÉŒfÚ
Stable isotope cellular imaging reveals that both live and degenerating fungal pelotons transfer carbon and nitrogen to orchid protocorms

2014”N3ŒŽ11“ú@’Į‚ĒƒRƒ“

2014”N2ŒŽ19“ú@â–{‚ģ‚ņ‚Ė˜_•ķ‚ŠPlant, Cell & Environment‚ÉŒfÚ
Arsenic alters uptake and distribution of sulphur in Pteris vittata

2014”N2ŒŽ17“ú@Aicheng‚ģ‚ņ‚Ė˜_•ķ‚ŠGCA‚ÉŒfÚ
Origins of Al-rich chondrules: Clues from a compound Al-rich chondrule in the Dar al Gani 978 carbonaceous chondrite

2014”N2ŒŽ01“ú@”nãŒŠˆę‚ģ‚ņ‚Š–kŠC“đ‘åŠw•‹ģ‚ɏA”C. ‚Ļ‚ß‚Å‚Æ‚Ī‚ē‚ī‚ǂ܂·.

2013”N12ŒŽ16“ú@‰““Ą—RŠóŽq‚ģ‚ņ’…”C

2013”N12ŒŽ13“ú@Aicheng‚ģ‚ņ‚Ė˜_•ķ‚ŠMAPS‚ÉŒfÚ
Petrography and mineralogy of the ungrouped type 3 carbonaceous chondrite Dar al Gani 978

2013”N12ŒŽ10“ú@ˆÉ“Ą‚ģ‚ņ‚Ė˜_•ķ‚ŠMAPS‚ÉŒfÚ
XANES and Mg isotopic analyses of spinels in Ca-Al-rich inclusions: Evidence for formation under oxidizing conditions.

2013”N12ŒŽ4-6“ú@‚Q‚O‚P‚R”N“x“ŊˆĘ‘˔䕔‰ï‚ɂĐ΋ī[Žq‚ģ‚ņŠwķ—DG”­•\ÜŽóÜ

2013”N12ŒŽ2“ú@‹īŒû‚ģ‚ņ‚Ė˜_•ķ‚ŠJournal of the Ceramic Society of Japan‚ÉŒfÚ
Ion implantation and diffusion of zinc in dense SnO2 ceramics.
Characterization of oxygen defect and zinc segregation in the dense tin dioxide ceramics added with zinc oxide.

2013”N12ŒŽ1“ú@Laurette Piani‚ģ‚ņ’…”C

2013”N12ŒŽ1“ú@‹īŒû‚ģ‚ņCŽ—Ņ‚ģ‚ņ‚Ė˜_•ķ‚ŠGCA‚ÉŒfÚ
In situ observation of D-rich carbonaceous globules embedded in NWA 801 CR2 chondrite

2013”N11ŒŽ27-28“ú@‰F’ˆ‚ɂςŊ‚镊Žqi‰ŧŒĪ‹†W‰ï

2013”N11ŒŽ25-26“ú@Isotopes, Earth and the Universe‰ï‹c‚ÉŽQ‰Á

2013”N11ŒŽ07“ú@VŽĀŒąŽš‚ʼnԓ­’†‚Ėims-6f

2013”N10ŒŽ21“ú@ims-6f‚Ėˆø‰zŠJŽn

2013”N9ŒŽ27“ú@“ŊˆĘ‘ĖƒiƒmƒXƒR[ƒv‚ŠNI‚Ėƒ†[ƒU[ƒCƒ“ƒ^ƒrƒ…[‚ŏЉî‚ģ‚ę‚Ü‚ĩ‚―D

2013”N8ŒŽ25-30“ú@Goldschmidt2013‚ɂċk‚ģ‚ņ‚ŠƒZƒbƒVƒ‡ƒ“‚ð‘gD

2013”N8ŒŽ01“ú@ˆÉ“Ąģˆę‚ģ‚ņ‚Š‹ž“s‘åŠwy‹ģŽö‚ɏļ”CD‚Ļ‚ß‚Å‚Æ‚Ī‚ē‚ī‚ǂ܂·

2013”N7ŒŽ19“ú@’n˜fŠw‰Č2”Nķ‚Ė3GŽĀK(“V•ķ‘äŒĐŠw)

2013”N7ŒŽ12“ú@’n˜fŠw‰Č2”Nķ‚Ė3GŽĀK(‰·ō•ŠÍ—“o•ʉ·ō)

2013”N6ŒŽ30“ú@’Ģ‚ģ‚ņ2”N‚Ė‘ØÝ‚ðI‚Ķ‹A‘

2013”N6ŒŽ25-26“ú@–ė’ÃŒ›ŽĄ“Œ‹ž‘åŠw–ž—_‹ģŽö—ˆ–K

2013”N6ŒŽ21-22“ú@‘æ‚R‰ņSIMSŒĪ‹†‰ïŠJÃ

2013”N6ŒŽ9-23“ú@ƒRƒyƒ“ƒn[ƒQƒ“‘åŠwStarPlan‚ĖMartin Bizzarro‹ģŽö—ˆ–K

2013”N5ŒŽ22-23“ú@JpGU Meeting 2013‚ɂăOƒ‹[ƒvƒƒ“ƒo[‚ĖŒĪ‹†”­•\‚PC‚Q

2013”N5ŒŽ19-24“ú@JpGU Meeting 2013‚ɂċk‚ģ‚ņCˆÉ“Ą‚ģ‚ņ‚ŠƒZƒbƒVƒ‡ƒ“‚ð‘gD

2013”N4ŒŽ25-26“ú@SISS-15‚ɂĔnã‚ģ‚ņŒĪ‹†”­•\

2013”N4ŒŽ22-25“ú@Zhang, Aicheng‚ģ‚ņŠw‰ïÜŽóÜ—’†‘z•ĻŠâÎ’n‹…‰ŧŠwŠw‰ï”N‰ï

2013”N4ŒŽ22“ú@ᥐķė—zŽq‚ģ‚ņ’…”C

2013”N4ŒŽ1“ú@Vl‰Á“ü@”ŽŽm‰Û’ö1–žCCŽm‰Û’ö3–žC‘ēŒĪķ5–ž

2013”N3ŒŽ25“ú@C—đŽŪC‘狯ŽŪC‹īŒûEóėEÎ‹īEī…‚ģ‚ņ

‚Ļ‚ß‚Å‚Æ‚Ī‚ē‚ī‚ǂ܂·

2013”N2ŒŽ20-22“ú@Workshop: Cosmochemical Perspective on the Early Evolution of the Early Solar System

2013”N2ŒŽ12“ú@]’[ŒN‚Ė˜_•ķ‚Š•葎ŋ—Ę•ŠÍŠw‰ïŽ‚ÉŒfÚ
Development of an Ultra-High Performance Multi-Turn TOF-SIMS/SNMS System gMULTUM-SIMS/SNMSh (Ebata et al.)

2013”N2ŒŽ01“ú@–p (D3), •ÐŽR (D2), ėč (D1)”ŒN‚Ė˜_•ķ‚ŠMaPSŽ‚ÉŒfÚ
Oxygen isotopic composition of the solar nebula gas inferred from high-precision isotope imaging of melilite crystals in an Allende CAI (Park et al.).
Oxygen isotopic zoning of reversely zoned melilite crystals in a fluffy type A Ca-Al-rich inclusions from the Vigarano meteorite (Katayama et al.).
Oxygen isotopic and chemical zoning of melilite crystals in a type A Ca-Al-rich inclusion of Efremovka CV3 chondrite (Kawasaki et al.).

2013”N1ŒŽ4-12“ú@Jim Greenwood”ŽŽm‘؍Ý

2013”N1ŒŽ5“ú@‰äX‚ĖŒŽ‚Ė…˜_•ķ‚ŠNature GeoscienceŽ‚TŽü”N†‚Å—DG˜_•ķ‚Ėˆę‚‚ɑI‚΂ę‚é
One of our ten favourite papers in our web focus that celebrates the fifth anniversary of Nature Geoscience

2012”N12ŒŽ24“ú@Žá–؏dsŒN‚Ė˜_•ķ‚ŠGCAŽ‚ÉŒfÚ
Petrology, trace element abundances and oxygen isotopic compositions of a compound CAI-chondrule object from Allende

2012”N12ŒŽ17-18“ú@‰ĒBƒ}ƒ‹ƒRƒ|[ƒRƒ~ƒbƒVƒ‡ƒ“‰ï‹c—ƒpƒŠ

2012”N12ŒŽ08“ú@”nãŒŠˆę‚ģ‚ņ‚Ė˜_•ķ‚ŠMassSpectrometryŽ‚ÉŒfÚ

2012”N11ŒŽ21-23“ú@Î‹ī[Žq‚ģ‚ņC“ŊˆĘ‘˔䕔‰ïƒ|ƒXƒ^[”­•\ÜŽóÜ

2012”N9ŒŽ25“ú@–pđŠ‚ģ‚ņC”ŽŽm(—Šw)Žæ“ū

2012”N7ŒŽ14“ú@”nãŒŠˆę‚ģ‚ņ‚ĖŒĪ‹†‚Š
@@@@@@@@@“Œ‹ž‘åŠwƒAƒCƒ\ƒg[ƒv‘‡ƒZƒ“ƒ^[ƒjƒ…[ƒX‚ɂďЉî

2012”N6ŒŽ23“ú@STVu1~8‰F’ˆŠJ”­‹ĮvŽB‰e @

2012”N5ŒŽ20-25“ú@“ú–{’n‹…˜fŊ‰ČŠw˜A‡ 2012”N“x˜A‡‘å‰ï‚ÉŽQ‰ÁE”­•\

2012”N5ŒŽ20“ú@’n‹…E˜fŊ‰ČŠwƒgƒbƒvƒZƒ~ƒi[‚ɂču‰‰

2012”N5ŒŽ18-19“ú@Workshop on Minerals-Water-Organics in the Early Solar System ‚ðŠJÃ

2012”N4ŒŽ3“ú@‘ēŒĪķ‚S–ž‚АV‰Á“ü

2012”N4ŒŽ1“ú@‰Á“Ąį}, ėč‹ģs, ā_“c—å“Þ, –öˆä‰Ā•ä—Ē‚ģ‚ņiŠw‚Ļ‚ß‚Å‚Æ‚Ī

2012”N4ŒŽ1“ú@ŽR–{‡Ži‚ģ‚ņi”Ž•ĻŠŲj‚Š’…”C

2012”N4ŒŽ1“ú@‹kČŒá‚ģ‚ņi—ŠwŒĪ‹†‰@j‚Š’…”C

2012”N3ŒŽ22“ú@‘狯ŽŪC—đŽŪ
@@@@@@@@@‰Á“Ąį}, ėč‹ģs, ā_“c—å“Þ, –öˆä‰Ā•ä—Ē ‚ģ‚ņ
@@@@@@@@@@@@@‚Ļ‚ß‚Å‚Æ‚Ī‚ē‚ī‚ǂ܂·

2012”N3ŒŽ @@@š§–{ŒĪ‘狯ķ@ŽR–{L—C‚ģ‚ņ
@@@@@@@@@‘狯ķ‚ːš‚ɏo‰‰

2012”N3ŒŽ16“ú@”ŽŽm˜_•ķ’†ŠÔ”­•\‰ï
@@@@@@@@@‹īŒû–Ē“ÞŽqC–pđŠ@”­•\

2012”N3ŒŽ15“ú@‘æ59‰ņ‰ž—p•Ļ—ŠwŠÖ˜A˜A‡u‰‰‰ïƒVƒ“ƒ|ƒWƒEƒ€
@@@@@@@@@“ņŽŸƒCƒIƒ“Žŋ—Ę•ŠÍ–@‚ːV“WŠJ
@@@@@@@@@- ‚Í‚â‚Ô‚ģ‚Đ‚įƒoƒCƒIƒeƒNƒmƒƒW[‚܂Š-

2012”N3ŒŽ14“ú@‘æ‚P‰ņSIMS•Ũ‹­‰ï@ŠJÃ

2012”N3ŒŽ2“ú@ƒtƒ‰ƒ“ƒX‘—§ŽĐ‘RŽj”Ž•ĻŠŲ‚ÅŠwˆĘRļ

2012”N2ŒŽ24-26“ú@ƒXƒL[ƒcƒA[ with Martin—ƒ‹ƒXƒc

2012”N2ŒŽ21“ú@Martin Bizzarro‹ģŽö—ˆ–K

2012”N2ŒŽ18“ú@—ˆŒ}Ž›—˜a‰ĖŽRŒ§‚ÅŽs–Ŋu‰‰

2012”N2ŒŽ15“ú@Åæ’[ŒĪ‹†‹’“_‘Ûƒ[ƒNƒVƒ‡ƒbƒvu’n‹…˜fŊ‰ČŠw[ķ–―‰ČŠw—Z‡ŒĪ‹†‚ĖÅ‘Oüv‚ōu‰‰E”­•\

2012”N2ŒŽ9“ú@ŽD–yŽs—§‹{‚ːX’†ŠwZ‚ŏo‘OŽö‹Æ

2012”N1ŒŽ31“ú@‰f‰æu‚Í‚â‚Ô‚ģvŽŽŽĘ‰ï

2012”N1ŒŽ24“ú@NHKBSƒRƒYƒ~ƒbƒNƒtƒƒ“ƒg
@@@@@uŒŽ‚Ė‘å’n‚ð‘–”j‚đ‚æI@l—ޏ‰ ŒŽ–ĘŽÔŠJ”­”é˜bv‚ɏo‰‰
@@@@@@Ä•ú‘—‚PŒŽ28“úC30“ú

2012”N1ŒŽ16“ú@ŒĪ‹†Žš”z‘ېā–ū‰ïi17Žž‚æ‚čj
@@@@@@1ŒŽ25“úC2ŒŽ8“ú‚É‚ā17Žž‚æ‚čŠJÃ‚ĩ‚Ü‚·

2011”N12ŒŽ27“ú@JAXAƒEƒFƒu“ÁW‚É“oę

2011”N12ŒŽ7“ú@‚Í‚â‚Ô‚ģĖŽæŽŽ—ŋ•ŠÍ‘æ“ņ’eŠJŽn

2011”N12ŒŽ2“ú@Georg Zellmer ”ŽŽm@‹A‘

2011”N12ŒŽ1“ú@Œŧ‘ã‰ŧŠw‚ɂ͂â‚Ô‚ģŽŽ—ŋ‚ˉðā˜_•ķŒfÚ

2011”N11ŒŽ19-22“ú@Trevor Ireland‹ģŽö@—ˆ–K

2011”N11ŒŽ17-18“ú@‘æ34‰ņ“ė‹ÉčĶÎƒVƒ“ƒ|—‹É’nŒĪ

2011”N11ŒŽ14-17“ú@OMEG11ŽQ‰Á——ŒĪ

2011”N11ŒŽ7-9“ú@
Workshop on Formation of the First Solids in the Solar SystemŽQ‰Á—ƒnƒƒC

2011”N11ŒŽ2-4“ú@6th Biennial Geochemical SIMS WorkshopŽQ‰Á—ƒnƒƒC

2011”N10ŒŽ31“ú@Workshop on Chemical Evolution of the UniverseŽQ‰Á—Žņ“s‘å

2011”N10ŒŽ23“ú@“ú–{˜fŊ‰ČŠw‰ïŽQ‰Á—‘Š–ÍŒī

2011”N10ŒŽ22“ú@Ž˜fŊ’Tļ‹@u‚Í‚â‚Ô‚ģv‹AŠŌƒJƒvƒZƒ‹“W“Á•ʍu‰‰‰ï—ė‘å

2011”N10ŒŽ20“ú@‘æ9‰ņ–k‘åE‹ã‘升“Ŋƒtƒƒ“ƒeƒBƒAEƒZƒ~ƒi[—“Œ‹ž

2011”N10ŒŽ19“ú@‹{‚ːX’†ŠwZķ“kŒĐŠw–K–â

2011”N10ŒŽ03“ú@Georg Zellmer ”ŽŽm@‘؍݊JŽn

2011”N09ŒŽ29-30“ú@Workshop on Water in Asteroids and MeteoritesŽQ‰Á

2011”N09ŒŽ20“ú@NHKƒRƒYƒ~ƒbƒNƒtƒƒ“ƒg‚ɏo‰‰

2011”N09ŒŽ17“ú@“ú–{’n‹…‰ŧŠw‰ïŽs–Ŋu‰‰‰ïuŠÂ‹Ŧ‚ƉF’ˆ‚Ė’n‹…‰ŧŠwv‚ɂču‰‰

2011”N08ŒŽ26“ú@‚Í‚â‚Ô‚ģ‰ņŽûƒCƒgƒJƒŽŽ—ŋ‚Ė˜_•ķ”­•\

2011”N07ŒŽ02“ú@Aicheng Zhang‹ģŽöi“ė‹ž‘åCJSPS Fellowj‰Á“ü

2011”N05ŒŽ28-29“ú@McKeegan‹ģŽöCChaussidon‹ģŽöCChoi‹ģŽöCLiu”ŽŽm—ˆ–K

2011”N05ŒŽ28-29“ú@Material interaction in the early solar systemŠJÃ

2011”N05ŒŽ22-27“ú@ALC '11‚Å–pŒNStudent AwardsŽóÜ


2011”N04ŒŽ01“ú@‹g‘šC]’[C”nãCā_“cCž–ėC–öˆä‚ģ‚ņ@‰Á“ü

2011”N03ŒŽ24“ú@•ÐŽR‚ģ‚ņAŽR–{ŒN@CŽmi—ŠwjŽö—^

2011”N03ŒŽ22“ú@ŽR–{ŒN’Į‚ĒƒRƒ“

2011”N03ŒŽ18“ú@‘æ3‰ņ@ˆĀ’č“ŊˆĘŒģ‘fƒCƒ[ƒWƒ“ƒO‹Zp‚É‚æ‚é
@@@@@@@@@@@@ŽY‹ÆƒCƒmƒx[ƒVƒ‡ƒ“@ƒVƒ“ƒ|ƒWƒEƒ€

2011”N03ŒŽ10“ú@‚Í‚â‚Ô‚ģ‰Šú•ŠÍŒ‹‰Ę”­•\—NASAŒŽ˜fŊ‰ï‹c

2011”N02ŒŽ10“ú@‚Í‚â‚Ô‚ģ‹AŠŌƒJƒvƒZƒ‹“WŽĶ‹L”Ou‰‰‰ï
@@@@@@@@@@@@@—ŽD–yŽsÂ­”N‰ČŠwŠŲ

2011”N01ŒŽ22“ú@G-COEu’n‹…‚Đ‚į’n‹…‚―‚ŋ‚ցv‹îęƒVƒ“ƒ|ƒWƒEƒ€
@@@@@@@@u‰ČŠw•û–@˜_‚ĖŠJ‘ņv

2011”N01ŒŽ18-19“ú@‘ä˜p’†‰›‰ČŠw‰@’n‹…‰ČŠwŒĪ‹†Šƒ[ƒNƒVƒ‡ƒbƒvŽQ‰Á
@@@@Cosmo-, Geo- and Environmental Research with NanoSIMS

2011”N01ŒŽ10“ú@Nature GeoscienceŽ‚ÉŒŽ‚Ė…˜_•ķŒfÚ
@@@@@@@@@@ƒvƒŒƒXƒŠƒŠ[ƒX

2011”N01ŒŽ06“ú@˜fŊ‰ČŠw‰ïŽ‚ɘ_•ķŒfÚ
@@@@@@@@@@]’[˜_•ķ@@ˆĒ•”˜_•ķ

2010”N12ŒŽ28“ú@NHKƒjƒ…[ƒXƒnƒCƒ‰ƒCƒg2010@o‰‰

2010”N12ŒŽ21“ú@ŠFŠųŒŽH—š§–{ŒĪ (‘nŽ)
@@@@@@@@ŠFŠųŒŽH@ŠFŠųŒŽH

2010”N12ŒŽ2“ú@•ķ•”‰ČŠwČ@‚Í‚â‚Ô‚ģŒũ˜JŽŌ‚ɑ΂·‚éŠīŽÓó‘Ą’æ

2010”N11ŒŽ29“ú@“Œ‹žE’†“úV•·@‘ū—zŒn‚ˁu‰ŧÎv•ŠÍ‚Ö

2010”N11ŒŽ17-19“ú@“ŊˆĘ‘˔䕔‰ïŽQ‰ÁE”­•\

2010”N11ŒŽ16“ú@HTB ƒCƒ`ƒIƒVI ‚ŋ‚å‚Ēo‰‰

@@@@@@@@@@@

2010”N11ŒŽ04“ú@š§–{Ū‹`@–kŠC“đV•·•ķ‰ŧÜ@ŽöÜ

@@@@@@@@@@@@

2010”N11ŒŽ01-02“ú@u’n•ķ‘ä‚É‚æ‚éƒTƒCƒGƒ“ƒXvƒVƒ“ƒ|ƒWƒEƒ€ŽQ‰ÁE”­•\

2010”N10ŒŽ29“ú@
‘ˆî“c‘åŠwŠe–ą‹L”OÞ—ŋ‹ZpŒĪ‹†Š2010”N“xƒI[ƒvƒ“ƒZƒ~ƒi[ŽQ‰ÁE”­•\

2010”N10ŒŽ08“ú@ŽR–{L—C˜_•ķ@SIAŽ‚ÉŒfÚ

2010”N10ŒŽ01-02“ú@“ú–{ƒAƒCƒ\ƒg[ƒv‹Ķ‰ïƒI[ƒ^ƒ€ƒZƒ~ƒi[ŽQ‰ÁE”­•\

2010”N09ŒŽ23-25“ú@“ú–{z•Ļ‰ČŠw‰ï”N‰ïŽQ‰ÁE”­•\

2010”N09ŒŽ16“ú@ƒJƒƒJims-6fÝ’uŠJŽn

2010”N09ŒŽ15-17“ú@“ú–{•ŠÍ‰ŧŠw‰ï”N‰ïŽQ‰ÁE”­•\

2010”N09ŒŽ13-14“ú@W’†u‹`—‹ž‘å’n˜f
@@@@@@@@@@@@ŽO‘î‚ģ‚ņC•―“c‚ģ‚ņ‚ ‚肊‚Æ‚Ī

2010”N09ŒŽ07-08“ú@“ú–{’n‹…‰ŧŠw‰ï”N‰ïŽQ‰ÁE”­•\

2010”N09ŒŽ04“ú@“đVŽŠwķV•·u–k‘唎•ĻŠŲ‚Ė‚Ļ•óv‚S‚É‹LŽ–

2010”N08ŒŽ28“ú@NHK@’ĮÕIA to Z@‚ŋ‚å‚Ēo‰‰

2010”N08ŒŽ23“ú@‘nŽ“VŽĀŒąŽšŠŪŽEˆø‰z

2010”N08ŒŽ07“ú@NHK‹ģˆį ƒTƒCƒGƒ“ƒXZERO
@@@@@@u‚Í‚â‚Ô‚ģ ‹AŠŌ@–Ē’m‚Ö‚Ė’§í‚É”—‚évo‰‰

@@@@@@@@@@@@

2010”N07ŒŽ26-30“ú@‘Ûz•ĻŠw‰ï”N‰ïŽQ‰ÁE”­•\

2010”N07ŒŽ17“ú@JAXA‰F’ˆ‹ģˆįŽw“ąŽŌƒZƒ~ƒi[‚ōuŽt

2010”N07ŒŽ06-07“ú@Bradley S. Meyer‹ģŽö—ˆ–KEƒZƒ~ƒi[

2010”N06ŒŽ30“ú@UHB‚Ė‚č‚ä‚Ŧ‚Ėƒg[ƒNDE–kŠC“đ‚ɏo‰‰

2010”N06ŒŽ15“ú@–kŠC“đV•·u‚Í‚â‚Ô‚ģv‚É‚Â‚Ē‚ÄƒRƒƒ“ƒg

2010”N06ŒŽ08“ú@SIAŽ‚ÉSCAPS˜_•ķŒfÚiWebŒöŠJj

2010”N05ŒŽ29-30“ú@‘Ûƒ[ƒNƒVƒ‡ƒbƒv
@@@@@@@Material Circulation in the Early Solar System‹Ī“ŊŽåÃ

2010”N05ŒŽ23-28“ú@’n˜f˜A‡‘å‰ï‚ÉŽQ‰ÁE”­•\

2010”N02ŒŽ20-21“ú@ƒXƒL[‡h

2010”N2ŒŽ16“ú@HOKUDAI Only One!‚ŃrƒfƒIÐ‰î

2010”N2ŒŽ3“ú@C˜_ķ2–ž‚ŠC˜_”­•\

2010”N2ŒŽ2“ú@‘ēŒĪķ2–ž‚Š‘ēŒĪ”­•\

2010”N01ŒŽ14“ú@ˆÉ“ĄŒĪ‚ːā–ū‰ïŠJÃ

2010”N01ŒŽ06“ú@š§–{ŒĪ‚ːā–ū‰ïŠJÃ

2009”N12ŒŽ18“ú@‚‹ī‚Í‚é‚Ý–kŠC“đ’mŽ–‚Š“ŊˆĘ‘ĖŒ°”ũ‹ū‚ðŽ‹Ž@

2009”N12ŒŽ11“ú@–kŠC“đV•·‹LŽ–u–k‘åĒŠE‰v‚ÉŒfÚ

2009”N12ŒŽ6-11“ú@ALC '09@ƒ}ƒEƒC“‡‚ÉŽQ‰Á

2009”N12ŒŽ3“ú@NHK‹ģˆį10min.ƒ{ƒbƒNƒX —‰Č‚R‚ɋ͗Í
@@@@@@@@@‘æ9‰ņŒīŽq‚ð’T‚é ŒīŽq‚ĖŽŋ—Ę

2009”N11ŒŽ15-19“ú@HRDP-5—‹ž“s‚ÉŽQ‰Á

2009”N11ŒŽ14“ú@ƒJƒƒJ@ƒVƒ…[ƒ}ƒbƒVƒƒ[”ŽŽm—ˆ–K

2009”N11ŒŽ4“ú@’†‘š”üį•F”ŽŽm—ˆ–KEƒZƒ~ƒi[E‘؍݁i6“ú‚܂Łj

2009”N10ŒŽ30“ú@‘L‘ė–į”ŽŽm—ˆ–KEƒZƒ~ƒi[

2009”N10ŒŽ1“ú@Park Chang Kun‚ģ‚ņ”ŽŽm‰Û’ö“üŠw

2009”N9ŒŽ24“ú@Greenwood‹ģŽö—ˆ–KE‘؍Ý(10ŒŽ10“ú‚Ü‚Å)

2009”N9ŒŽ24“ú@ƒfƒBƒXƒJƒoƒŠ[ƒLƒbƒY‰ČŠwŽĀŒąŠŲ`ƒRƒYƒ~ƒbƒNƒJƒŒƒbƒW`

uŽt‹Ķ—Í

2009”N9ŒŽ24“ú@“ú–{•ŠÍ‰ŧŠw‰ï”N‰ïu‰‰

2009”N9ŒŽ18“ú@“ú–{“dŽq‚r‚d‚lƒ†[ƒU[ƒYƒ~[ƒeƒBƒ“ƒOuŽt

2009”N9ŒŽ15-17“ú@“ú–{’n‹…‰ŧŠw‰ï”N‰ïŽQ‰Á

2009”N9ŒŽ13“ú@‘æ4‰ņ“ú–{’n‹…‰ŧŠw‰ïƒVƒ‡[ƒgƒR[ƒXuŽt

2009”N9ŒŽ8-10“ú@“ú–{z•ĻŠw‰ï”N‰ïŽQ‰Á

2009”N8ŒŽ30“ú@Geochem. J.Ž‚É‘ū—z•—˜_•ķŒfÚ

Vestige of stellar wind from the protosun?

2009”N7ŒŽ13-18“ú@čĶÎŠw‰ï—•§‚ÉŽQ‰Á

2009”N6ŒŽ21-26“ú@ƒS[ƒ‹ƒhƒVƒ…ƒ~ƒbƒg‰ï‹c—ƒXƒCƒX‚ÉŽQ‰Á

2009”N6ŒŽ16“ú@]’[VŒá‚ģ‚ņ‘åã‘åŠw‚É“]o

2009”N5ŒŽ16-21“ú@’n˜f˜A‡‘å‰ï‚łωï‚Ē‚ĩ‚Ü‚ĩ‚å‚Ī

2009”N5ŒŽ@1“ú@‘å’Î‚Đ‚Ļ‚č‚ģ‚ņ’…”C

2009”N 4ŒŽ 2“ú@Vl‰Á“ü

2009”N 3ŒŽ25“ú@â–{’žÆ˜_•ķ@—VŊl‚ÉŒfÚ

2009”N 3ŒŽ25“ú@3–ž@‘狯EI—đ

2009”N 2ŒŽ15“ú@ŠCŠOŒü‚Ŋ­•{L•ņŽ2008”N10ŒŽ†‚ŏЉî

2009”N 2ŒŽ13“ú@‘狯ŒĪ‹†‚ð’n˜f˜A‡‘å‰ï(5ŒŽ)‚Å”­•\‚ĩ‚Ü‚·D

2009”N 1ŒŽ30“ú@‚Ų‚­‚Å‚ņŠÂ‹Ŧu‰‰‰ï@uŽt

2008”N12ŒŽ26“ú@“Á•ʐ„iŒĪ‹† ”ŽŽmŒĪ‹†ˆõ •åWŠJŽniI—đ‚ĩ‚Ü‚ĩ‚―j

2008”N12ŒŽ15“ú@Appl. Surf. Sci.Ž‚ɘ_•ķŒfÚ

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2008”N12ŒŽ05-07“ú@“ú•Đæ’[‰ČŠwƒVƒ“ƒ|ƒWƒEƒ€

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2008”N11ŒŽ29“ú@ƒTƒCƒGƒ“ƒXEƒJƒtƒFŽD–y@ƒQƒXƒgo‰‰

2008”N11ŒŽ@š§–{Ū‹` ‹ā‘Ūvol.78 No.11 (ƒAƒOƒl‹ZpƒZƒ“ƒ^[)ŒfÚ

2008”N09ŒŽ17-19“ú@ˆÉ“Ąģˆę@’n‹…‰ŧŠw‰ï‚ɂăZƒbƒVƒ‡ƒ“Šé‰æ

’n‹…ŠO•ĻŽŋ‚ˉF’ˆ‰ŧŠwFæ‘ū—zŒnŽj‚Đ‚į‰Šú‘ū—zŒnŽj

2008”N08ŒŽ24-29“ú@Choi‹ģŽö‹Ī“ŊŒĪ‹†—ˆ–K

2008”N08ŒŽ08“ú@Wasson‹ģŽö—ˆ–K

2008”N08ŒŽ04-06“úSIMS Workshop in Sapporo-‘æ‚Q‰ņƒNƒ‰[ƒNƒZƒ~ƒi[

2008”N08ŒŽ04“ú@Krot”ŽŽmCMessenger”ŽŽmCChoi ‹ģŽö—ˆ–K

2008”N07ŒŽ09-19“ú@Greenwood”ŽŽmCVicenzi”ŽŽm‹Ī“ŊŒĪ‹†—ˆ–K

2008”N06ŒŽ12“ú@‰ČŒĪ”ïu“Á•ʐ„iŒĪ‹†v‚ÉĖ‘ð

2008”N06ŒŽ08-17“ú@Fagan”ŽŽmŽĀŒą—ˆ–K

2008”N06ŒŽ01“ú@GCAŽ‚ɉF’ˆƒVƒ“ƒvƒŒƒNƒ^ƒCƒg˜_•ķŒfÚ

2008”N05ŒŽ22“ú@š§–{Ū‹` “ú–{Œ°”ũ‹ūŠw‰ï ˜_•ķÜŽóÜ

2008”N05ŒŽ15“ú@GCAŽ‚ÉCAI˜_•ķŒfÚ

2008”N05ŒŽ06-08“ú@Choi”ŽŽm‹Ī“ŊŒĪ‹†—ˆ–K

2008”N04ŒŽ01“ú@V‘ēŒĪķ2–žEC˜_ķ1–žEƒ|ƒXƒhƒN1–žŽQ‰Á

2008”N03ŒŽ25“ú@‘ēŒĪķ1–žEC˜_ķ1–ž‘狯

2008”N03ŒŽ14“ú@NASA JSC NanoSIMS Lab–K–â

2008”N03ŒŽ@@@GRLŽ‚ɉΐŊ‚ː…˜_•ķ”­•\

2008”N03ŒŽ@@@Rev. Mineral. Geochem.Ž‚ÉŽ_‘f“ŊˆĘ‘ĖƒŒƒrƒ…[˜_•ķ”­•\

2008”N01ŒŽ@@@ƒpƒŠƒeƒBiŠÛ‘Pj1ŒŽ†‚É‘ū—zŒnŽnŒī…‚ˉðā‹LŽ–

2007”N12ŒŽ27“ú@‰ČŒĪ”ïŠî”Õ(S)‚Ė’†ŠÔ•]‰ŋŒ‹‰Ę”­•\

2007”N12ŒŽ27“ú@JSTæ’[Œv‘Š•ŠÍ‹ZpE‹@ŠíŠJ”­Ž–‹Æ‚Ė’†ŠÔ•]‰ŋŒ‹‰Ę”­•\

2007”N12ŒŽ03“ú@ŠÃ—˜”ŽŽmENittler”ŽŽm—ˆ–K

2007”N11ŒŽ20“ú@‹g•”ü˜a‚ģ‚ņƒƒ“ƒo[‚ÉŽQ‰Á

2007”N11ŒŽ@@@Meteoritics & Planetary ScienceŽ‚ɘ_•ķ2•Ō”­•\

2007”N10ŒŽ29“ú@â–{’žÆ SIMS XVI Student AwardŽóÜ

2007”N10ŒŽ16“ú@â–{’žÆ‚Š–k‘å‘nŽ‰ČŠw‹Ī“ŊŒĪ‹†‹@\“Á”C•‹ģ‚ÉĖ—p

2007”N08ŒŽ13-17“ú@Metsoc2007@˜_•ķ5–{”­•\

@@@@@@@@@@@â–{’žÆ•]’[VŒá: Student Travel AwardŽóÜ

2007”N08ŒŽ07-12“ú@ƒAƒŠƒ]ƒi•ƒjƒ…[ƒƒLƒVƒR„ŒŸ

2007”N07ŒŽ19“ú@]’[VŒá: PS2007Kobe Poster AwardŽóÜ

2007”N06ŒŽ15“ú@‘ū—zŒnÅ‰‚ː…

2007”N04ŒŽ18“ú@“úŒoŽY‹ÆV•·‚É“ŊˆĘ‘ĖŒ°”ũ‹ūŒfÚ

2007”N02ŒŽ@–k‘åL•ņŽƒŠƒeƒ‰Eƒ|ƒvƒŠ29† ‚É“ŊˆĘ‘ĖŒ°”ũ‹ū‚ÆŒĪ‹†Ð‰î

2007”N02ŒŽ02“ú@Chemie der Erde ‚ɘ_•ķŒfÚC•\ކ‚ÉĖ—p

2007”N01ŒŽ24“ú@–kŠC“đV•·‹LŽ–u“ė‹ÉŠÏ‘Š50”Nv ‚ɃRƒƒ“ƒgŒfÚ

2006”N12ŒŽ01“ú@CAI’†‚ĖMg‚ÆK“ŊˆĘ‘Ė ‚É‚Â‚Ē‚ÄMaPS Ž‚ɘ_•ķ”­•\

•\ކŽĘ^‚É‚āĖ—p

2006”N11ŒŽ29“ú@‚Šī“xƒCƒIƒ“ŒŸoŠí ‚É‚Â‚Ē‚ÄSIA Ž‚ɘ_•ķ”­•\

2006”N11ŒŽ12-25“ú@J. Greenwood”ŽŽm—ˆ–KE‹Ī“ŊŒĪ‹†

2006”N11ŒŽ06-10“ú@M. Kumar”ŽŽm—ˆ–KE‹Ī“ŊŒĪ‹†

2006”N10ŒŽ10-22“ú@A. Meibom”ŽŽm—ˆ–KE‹Ī“ŊŒĪ‹†

2006”N09ŒŽ11-12“ú@‘æ1‰ņƒNƒ‰[ƒNƒZƒ~ƒi[

2006”N06ŒŽ23-28“ú@‘Ûz•ĻŠw‰ï‹cIMA-Kobe@˜_•ķ7–{”­•\

2006”N05ŒŽ14-18“ú@“ú–{’n‹…˜fŊ‰ČŠw˜A‡2006”N‘å‰ï@˜_•ķ7–{”­•\

2006”N04ŒŽ01“ú@ Vl‰Á“üiCŽm1–žC‘ēŒĪ2–žj

2006”N03ŒŽ23“ú@ ]’[VŒá: –kŠC“đ‘åŠw’n‹…‰ŧŠwŠpŠFÜŽóÜ

2006”N01ŒŽ24“ú@ “ŊˆĘ‘ĖŒ°”ũ‹ū‹LŽ–@“Į”„E–ˆ“úV•·ŒfÚ

2005”N12ŒŽ14“ú@ FE-SEM (JSM-7000F) with incaÝ’u

2005”N12ŒŽ07“ú@ â–{’žÆ: ALC '05 Student AwardŽóÜ

2005”N12ŒŽ03“ú @ˆÉ“Ąģˆę: ’n‹…‰ŧŠwŒĪ‹†‹Ķ‰ï§—ãÜŽóÜ

2005”N11ŒŽ28“ú@ –k‘åLPSŠJÝ

2005”N10ŒŽ16“ú@ “ŒH‘åLPS•―

2005”N09ŒŽ17“ú@
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2005”N04ŒŽ01“ú@ –kŠC“đ‘åŠw’n‹…‰ŧŠwƒOƒ‹[ƒv
@@@@@@@@ i‹Œ’nz‘æ3uĀj‚É

2005”N02ŒŽ02“ú@ SCAPS•ŠÍ‚ĖŠî‘b“I˜_•ķŒfÚ

2004”N12ŒŽ01“ú@ Pellas-Ryder Planetary Sciences
@@@@@@@@@@ Best Student Paper AwardŽóÜ

2004”N09ŒŽ17“ú@ ‘ū—zŒn‚ɂςŊ‚éŽ_‘f“ŊˆĘ‘˂˓ä‰ð–ū

2004”N06ŒŽ07“ú@ Geochemical Journal AwardŽóÜ

2004”N04ŒŽ29“ú@ čĶÎ’†‚ɃXƒ^[ƒ_ƒXƒg‚ð”­ŒĐ