Hokkaido University · 物理学・天文学
Hisayoshi Yurimoto教授の研究室は、太陽系の起源と惑星形成のメカニズムを解明するため、隕石や小惑星の酸素同位体比を精密に分析する研究を展開しています。特に、原始太陽系円盤内での同位体分馏や、分子雲からの物質輸送メカニズムに注目し、酸素同位体異常の起源を解明しています。また、HayabusaやHayabusa2の小惑星サンプルを用いた現地分析を通じて、太陽系天体の化学的・同位体的起源を解明する国際共同研究も推進しています。
Figures are computed from collected data and may differ slightly.
Meteorites and their components have anomalous oxygen isotopic compositions characterized by large variations in 18O/16O and 17O/16O ratios. On the basis of recent observations of star-forming regions and models of accreting protoplanetary disks, we suggest that these variations may originate in a parent molecular cloud by ultraviolet photodissociation processes. Materials with anomalous isotopic compositions were then transported into the solar nebula by icy dust grains during the collapse of t
Carbonaceous meteorites are thought to be fragments of C-type (carbonaceous) asteroids. Samples of the C-type asteroid (162173) Ryugu were retrieved by the Hayabusa2 spacecraft. We measured the mineralogy and bulk chemical and isotopic compositions of Ryugu samples. The samples are mainly composed of materials similar to those of carbonaceous chondrite meteorites, particularly the CI (Ivuna-type) group. The samples consist predominantly of minerals formed in aqueous fluid on a parent planetesima
Oxygen isotopic composition of our solar system is believed to have resulted from mixing of two isotopically distinct nebular reservoirs, 16O-rich and (17,18)O-rich relative to Earth. The nature and composition of the (17,18)O-rich reservoir are poorly constrained. We report an in situ discovery of a chemically and isotopically unique material distributed ubiquitously in fine-grained matrix of a primitive carbonaceous chondrite Acfer 094. This material formed by oxidation of Fe,Ni-metal and sulf
Meteorite studies suggest that each solar system object has a unique oxygen isotopic composition. Chondrites, the most primitive of meteorites, have been believed to be derived from asteroids, but oxygen isotopic compositions of asteroids themselves have not been established. We measured, using secondary ion mass spectrometry, oxygen isotopic compositions of rock particles from asteroid 25143 Itokawa returned by the Hayabusa spacecraft. Compositions of the particles are depleted in (16)O relativ
Research Article| January 01, 2008 Oxygen Isotopes of Chondritic Components Hisayoshi Yurimoto; Hisayoshi Yurimoto Department of Natural History Sciences, Isotope Imaging Laboratory of CRIS, Hokkaido University, Sapporo 060-0810, Japan, yuri@ep.sci.hokudai.ac.jp Search for other works by this author on: GSW Google Scholar Alexander N. Krot; Alexander N. Krot Hawai'i Institute of Geophysics and Planetology, School of Ocean and Earth Science and Technology, University of Hawai'i at Manoa, Honolulu
A calcium-aluminum-rich inclusion (CAI) from the Allende meteorite was analyzed and found to contain melilite crystals with extreme oxygen-isotope composition (approximately 5 percent oxygen-16 enrichment relative to terrestrial oxygen-16). Some of the melilite is also anomalously enriched in oxygen-16 compared with oxygen isotopes measured in other CAIs. The oxygen isotopic variation measured among the minerals (melilite, spinel, and fassaite) indicates that crystallization of the CAI started f
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