基本情報
- 所属
- 国立研究開発法人宇宙航空研究開発機構 宇宙科学研究所 太陽系科学研究系 准教授東京大学大学院 理学系研究科化学専攻 准教授
- 学位
- 博士(理学)(1996年3月 東京大学)
- 研究者番号
- 30321566
- J-GLOBAL ID
- 201501026547105146
- researchmap会員ID
- B000243484
- 外部リンク
専門は惑星科学、惑星物理学、惑星物質・物性科学、惑星探査科学。特に熱赤外カメラを用いた史上初の小惑星探査により、惑星探査に「熱撮像」の手法を世界で初めて導入に成功し、さらに「太陽系物性科学」の分野を創設。観測機器の開発による惑星探査でのその場観測とサンプルリターンによる帰還試料分析を主な研究手法とする。
主要な開発機器は、蛍光X線分光計、熱赤外カメラ、多波長熱赤外カメラである。また開発中のものはマルチターン飛行時間型質量分析計等である。地上分析においてはハイパースペクトル顕微鏡(フランスIAFとの共同)やロックインサーモグラフィ法による熱拡散率顕微鏡(石崎拓也氏と共同)による帰還試料の分析の他、将来の資料熱物性分析のための多色熱赤外顕微鏡の開発を推進中である。
◆国内外の惑星探査計画(観測機器担当)
・月探査「Lunar-A」 光学カメラLIC(Co-I)1993-2005
・火星探査「のぞみ」 HFレーダ高度計PWS/ALT(Co-I)1994-2003、可視カメラMIC(Co-I)1995-2003
・小惑星探査「はやぶさ」 蛍光エックス線分光計XRS担当(PI)1995-2010
・月周回探査「かぐや(SELENE)」 蛍光X線分光計XRS担当(PI)1998-2009
・小惑星探査「はやぶさ2」 中間赤外カメラTIR担当(PI)2010-present.、
・小惑星探査「はやぶさ2」 小型ランダーMASCOT担当(JAXAリエゾン)2010-2019
・小惑星探査「はやぶさ2」 デジタルエレキDE担当(PI)2010-present
・小惑星探査「はやぶさ2」 ハイパースペクトル顕微鏡MicrOmega担当(Co-PI)2019-present
・二重小惑星探査計画Hera 熱赤外カメラTIRI担当(PI)2020-present
・二重小惑星探査計画Hera Hera Investigation Team メンバ(招聘)2020-present
・地球近傍遭遇小惑星探査計画RAMSES 熱赤外カメラTIRI担当(PI)2025-present
◆帰還サンプルの分析(地上分析)
・JAXAキュレーションセンター(地球外物質研究グループ所属)2009-present
・ハイパースペクトル顕微鏡MicrOmega-CF(Co-PI)
・熱赤外顕微鏡(PI)
◆海外ミッション参画
・SMART-1 D-CIXS(Co-I)2000-2005
・Chandrayaan-1 C1XS(Co-I)2006-2009
・BepiColombo MIXS(Co-I)2003-present、SIXS (Co-I)2003-present
・Hera (-JP) Proejct Manager & TIRI(PI)2020-present、Investigation Team 2020-present
◆WG参画
・ESA MarcoPolo(=Hayabusa-MkII)においてX線分光、熱積外カメラ、着陸機
・月着陸機SELENE-B、SELENE-II
・月着陸SLIM(科学システム検討担当)
・火星探査MELOS(科学システム検討担当(固体惑星)、着陸探査)
・OKEANOS (科学システム検討担当、質量分析計HRMSの開発)
・月縦孔探査Uzume(科学システム検討担当、熱赤外カメラの開発)
・次世代小天体サンプルリターン理学WG(代表)
研究キーワード
32経歴
7-
2011年4月 - 現在
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2006年9月 - 現在
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2008年4月 - 2013年3月
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2003年10月 - 2006年8月
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1999年2月 - 2003年9月
学歴
4-
1993年 - 1996年
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1991年 - 1993年
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1989年 - 1991年
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1987年 - 1989年
委員歴
3-
2012年8月 - 2013年8月
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2010年8月 - 2012年8月
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2009年8月 - 2010年8月
受賞
24-
2020年12月
論文
268-
A newly revised estimation of bulk densities and examination of the shape of individual Ryugu grainsEarth, Planets and Space 75(1) 2023年11月15日
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Earth, Planets and Space 75(1) 2023年11月15日
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Meteoritics & Planetary Science 2023年11月14日Abstract Samples were recently collected from the carbonaceous asteroid (162173) Ryugu, by the Japan Aerospace Exploration Agency (JAXA) Hayabusa2 mission. They resemble CI chondrites material, thus showing clear evidence of extensive aqueous alteration attested by the widespread presence of a mixture of serpentine and saponite. We present here a scanning transmission electron microscopy study of the Ryugu dominant lithology of the phyllosilicate matrix at the nanometer scale, which we compare with that of the Orgueil CI chondrite. In both objects, the phyllosilicates are of comparable nature and texture, consisting of a mixture of small‐sized crystallites of serpentine and saponite. At the micrometer scale or less, the texture is an alternation of fine and coarse domains. The fine‐grained regions are dominated by saponite. In Ryugu, they enclose numerous Fe,Ni nanosulfides, whereas in Orgueil, S‐ and Ni‐rich ferrihydrite is abundant. The coarse‐grained regions contain more serpentine and no or little Fe,Ni sulfides or ferrihydrite. Scanning transmission x‐ray microscopy at the Fe‐L3 edge also reveals that iron valency of phyllosilicates is higher and more homogeneous in Orgueil (~70% Fe3+) than in Ryugu (<50% Fe3+). We interpret the observed textures as being mostly a consequence of aqueous alteration, likely resulting from the replacement by phyllosilicates of submicrometric components, initially agglomerated by a primary accretion. The fine‐grained domains may result from the replacement of GEMS (GEMS—glass with embedded metal and sulfides) objects or from other types of nanometric assemblages of silicate and Fe‐based nanophases. On the other hand, the coarse‐grained regions may correspond to the replacement of anhydrous crystalline silicates of the olivine and pyroxene type. The major difference is the presence of Fe,Ni sulfides in Ryugu and of ferrihydrite and higher iron valency of phyllosilicates in Orgueil. This might be due to long‐term terrestrial weathering that would have destabilized the nanosulfides. We also explore an alternative scenario involving more oxidizing hydrothermal conditions on the Orgueil parent body.
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Meteoritics & Planetary Science 2023年11月13日 査読有りAbstract We report a Fourier transform infrared analysis of functional groups in insoluble organic matter (IOM) extracted from a series of 100–500 μm Ryugu grains collected during the two touchdowns of February 22 and July 11, 2019. IOM extracted from most of the samples is very similar to IOM in primitive CI, CM, and CR chondrites, and shows that the extent of thermal metamorphism in Ryugu regolith was, at best, very limited. One sample displays chemical signatures consistent with a very mild heating, likely due to asteroidal collision impacts. We also report a lower carbonyl abundance in Ryugu IOM samples compared to primitive chondrites, which could reflect the accretion of a less oxygenated precursor by Ryugu. The possible effects of hydrothermal alteration and terrestrial weathering are also discussed. Last, no firm conclusions could be drawn on the origin of the soluble outlier phases, observed along with IOM in this study and in the preliminary analysis of Ryugu samples. However, it is clear that the HF/HCl residues presented in this publication are a mix between IOM and the nitrogen‐rich outlier phase.
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Science Advances 9(45) 2023年11月10日Studies of material returned from Cb asteroid Ryugu have revealed considerable mineralogical and chemical heterogeneity, stemming primarily from brecciation and aqueous alteration. Isotopic anomalies could have also been affected by delivery of exogenous clasts and aqueous mobilization of soluble elements. Here, we show that isotopic anomalies for mildly soluble Cr are highly variable in Ryugu and CI chondrites, whereas those of Ti are relatively uniform. This variation in Cr isotope ratios is most likely due to physicochemical fractionation between 54 Cr-rich presolar nanoparticles and Cr-bearing secondary minerals at the millimeter-scale in the bulk samples, likely due to extensive aqueous alteration in their parent bodies that occurred after Solar System birth. In contrast, Ti isotopes were marginally affected by this process. Our results show that isotopic heterogeneities in asteroids are not all nebular or accretionary in nature but can also reflect element redistribution by water.
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Nature Communications 14(1) 2023年9月18日
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Meteoritics & Planetary Science 2023年9月2日
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Acta Astronautica 213 121-137 2023年9月
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Earth, Planets and Space 75(1) 2023年9月1日
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Meteoritics & Planetary Science 2023年8月19日
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Planetary Science Journal 4(8) 2023年8月1日 査読有り
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Nature Geoscience 16(8) 675-682 2023年8月
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Science Advances 9(28) 2023年7月12日
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2023年5月25日<p id="p1">The elastic property of asteroids is one of the paramount parameters forunderstanding their physical nature. For example, the rigidity enablesus to discuss the asteroid’s shape and surface features such as cratersand boulders, leading to a better understanding of geomorphological andgeological features on small celestial bodies. The sound velocity allowsus to construct an equation of state that is the most fundamental stepto simulate the formation of small bodies numerically. Moreover, seismicwave velocities and attenuation factors are useful to account forresurfacing caused by impact-induced seismic shaking. The elasticproperty of asteroids thus plays an important role in elucidating theasteroid’s evolution and current geological processes. The Hayabusa2spacecraft brought back the rock samples from C-type asteroid (162173)Ryugu in December 2020. As a part of the initial analysis of returnedsamples, we measured the seismic wave velocity of the Ryugu samplesusing the pulse transmission method. We found that P- and S-wavevelocities of the Ryugu samples were about 2.1 km/s and 1.2 km/s,respectively. We also estimated Young’s modulus of 6.0 – 8.0 GPa. Acomparison of the derived parameters with those of carbonaceouschondrites showed that the Ryugu samples have a similar elastic propertyto the Tagish Lake meteorite, which may have come from a D-typeasteroid. Both Ryugu and Tagish Lake show a high degree of aqueousalteration and few high-temperature components such as chondrules,indicating that they formed in the outer region of the solar system.</p>
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Nature Astronomy 7(6) 669-677 2023年4月20日Abstract Micrometeorites, a possible major source of Earth’s water, are thought to form from explosive dispersal of hydrated chondritic materials during impact events on their parental asteroids. However, this provenance and formation mechanism have yet to be directly confirmed using asteroid returned samples. Here, we report evidence of mild shock metamorphism in the surface particles of asteroid Ryugu based on electron microscopy. All particles are dominated by phyllosilicates but lack dehydration textures, which are indicative of shock-heating temperatures below ~500 °C. Microfault-like textures associated with extensively shock-deformed framboidal magnetites and a high-pressure polymorph of Fe–Cr–sulfide have been identified. These findings indicate that the average peak pressure was ~2 GPa. The vast majority of ejecta formed during impact on Ryugu-like asteroids would be hydrated materials, larger than a millimetre, originating far from the impact point. These characteristics are inconsistent with current micrometeorite production models, and consequently, a new formation mechanism is required.
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Earth, Planets and Space 75(1) 2023年4月6日
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Astrophysical Journal Letters 946(2) 2023年4月1日
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International Journal of Thermophysics 44(4) 2023年4月 査読有り
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Geochimica et Cosmochimica Acta 346 65-75 2023年4月 査読有り
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Geochimica et Cosmochimica Acta 347 42-57 2023年4月 査読有り
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Nature Communications 14(1) 2023年3月17日
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Geochimica et Cosmochimica Acta 345 62-74 2023年3月15日 査読有り
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Geochemical Perspectives Letters 25 8-12 2023年3月
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Astronomy and Astrophysics 671 2023年3月1日 査読有り
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Science (New York, N.Y.) 379(6634) eabn9057 2023年2月24日 査読有り
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Science (New York, N.Y.) 379(6634) eabn8671 2023年2月24日 査読有り
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Science (New York, N.Y.) 379(6634) eabn9033 2023年2月24日 査読有り
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Nature Communications 14(1) 532-532 2023年2月16日 査読有り
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Nature Astronomy 7(2) 170-181 2023年2月 査読有り
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Nature Astronomy 2023年1月12日 査読有り
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Nature Astronomy 2023年1月12日 査読有り
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Journal of Analytical Atomic Spectrometry 2023年Mass spectrometry of noble gas isotopes from the asteroid materials delivered by robotic space missions requires high sensitivity, high ion transmission, low detection limit, and other characteristics not readily available in commercial instruments.
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Nature Astronomy 2023年
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Nature Astronomy 7(1) 29-38 2023年1月 査読有り
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Nature Astronomy 7(2) 182-189 2022年12月12日 査読有り
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Earth, Planets and Space 74(1) 2022年12月 査読有り
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Science Advances 8(50) 2022年12月 査読有り
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Earth, Planets and Space 74(1) 2022年12月 査読有り
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Journal of Geophysical Research: Planets 127(11) 2022年11月 査読有り
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Science Advances 8(46) 2022年11月 査読有り
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Science Advances 8(46) 2022年11月 査読有り
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Astronomy & Astrophysics 666 A164-A164 2022年10月 査読有りContext. After landing on C-type asteroid Ryugu, MASCOT imaged brightly colored, submillimeter-sized inclusions in a small rock. Hayabusa2 successfully returned a sample of small particles from the surface of Ryugu, but none of these appear to harbor such inclusions. The samples are considered representative of Ryugu. Aims. To understand the apparent discrepancy between MASCOT observations and Ryugu samples, we assess whether the MASCOT landing site, and the rock by implication, is perhaps atypical for Ryugu. Methods. We analyzed observations of the MASCOT landing area acquired by three instruments on board Hayabusa2: a camera (ONC), a near-infrared spectrometer (NIRS3), and a thermal infrared imager. We compared the landing area properties thus retrieved with those of the average Ryugu surface. Results. We selected several areas and landforms in the landing area for analysis: a small crater, a collection of smooth rocks, and the landing site itself. The crater is relatively blue and the rocks are relatively red. The spectral and thermophysical properties of the landing site are very close to those of the average Ryugu surface. The spectral properties of the MASCOT rock are probably close to average, but its thermal inertia may be somewhat higher. Conclusions. The MASCOT rock can also be considered representative of Ryugu. Some of the submillimeter-sized particles in the returned samples stand out because of their atypical spectral properties. Such particles may be present as inclusions in the MASCOT rock.
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Nature Astronomy 6(10) 1172-1177 2022年10月 査読有り
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Nature Astronomy 6(10) 1163-1171 2022年10月 査読有り
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Planetary and Space Science 219 2022年9月15日 査読有り
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2022年8月29日 査読有りAbstract Chondrule-like objects and Ca-Al-rich inclusions (CAIs) are discovered in the retuned samples from asteroid Ryugu. Three chondrule-like objects, which are 16O-rich and -poor with D17O (= d17O – 0.52 × d18O) values of ~ − 23‰ and ~ − 3‰, are dominated by Mg-rich olivine, resembling what proposed as earlier generations of chondrules. The 16O-rich objects are likely to be melted amoeboid olivine aggregates that escaped from incorporation into 16O-poor chondrule precursor dust. Two CAIs composed of spinel, hibonite, and perovskite are 16O-rich with D17O of ~ − 23‰ and possibly as old as the oldest CAIs. The chondrule-like objects and CAIs (< 30 µm) are as small as those from comets, suggesting radial transport favoring smaller objects from the inner solar nebula to the formation location of the Ryugu original parent body, which is farther from the Sun and scarce in chondrules. The transported objects may have been mostly destroyed during aqueous alteration.
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Earth, Planets and Space 75(1) 2022年8月26日 査読有り
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Earth, Planets and Space 75(1) 2022年8月3日 査読有り招待有り
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Monthly Notices of the Royal Astronomical Society 514(4) 6173-6182 2022年8月1日 査読有り
MISC
537-
Hayabusa2024: 11th Symposium of Solar System Materials 2024年11月
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Europlanet Science Congress 2020 EPSC2020-12 2024年5月2日 招待有り筆頭著者責任著者&lt;p&gt;Thermal imaging, or thermography, has revealed the surface physical state of the C-type near-Earth asteroid 162173 Ryugu (Okada et al., 2020). The asteroid is the target body of JAXA Hayabsua2 asteroid sample return mission, and it has been characterized through remote sensing and surface experiments, and will be deeply and accurately investigated by analysis of returned sample. Thermal observations are among such multi-scale observations, providing a new insight into understanding planetary evolution process.&lt;/p&gt; &lt;p&gt;Thermal infrared imager TIR (Okada et al., 2017; 2020) was used to take one-rotation global thermal images of Ryugu at every 6&amp;#176; step, from the home position (20 km altitude) or from the Mid-Altitude (5 km altitude). There were two big surprises contrary to the predictions before arrival at Ryugu: i) flat diurnal temperature profiles compared to the case of non-rough surface, and ii) non-cold spots identified for most of boulders. The flat diurnal temperature profiles and its maximum temperature in a day indicate that Ryugu must have very rough surfaces made of highly porous materials, derived from the thermal inertia of 300 &amp;#177; 100 J K&lt;sup&gt;-1&lt;/sup&gt;s&lt;sup&gt;-0.5&lt;/sup&gt;m&lt;sup&gt;-2&lt;/sup&gt; (hereafter, tiu). Non-cold boulders indicate that boulders are less consolidated or compacted than typical carbonaceous chondrite meteorites, and shows the same thermophysical properties as the surroundings. TIR was also used to take close-up thermal images during the descent operations, and to have proven that the surface of asteroid is covered with fragments of porous rocks, larger than several centimeters in diameter. The typical size of fragments larger than thermal skin depth (~35 mm) results in similar thermal properties between the boulders and their surroundings. We also consider the surface roughness effect (Shimaki et al., 2020) to obtain the maps of thermal inertia ( 225 &amp;#177; 45 tiu) and the roughness (0.41 &amp;#177; 0.05) at the same time, corresponding to very rough surfaces made of highly-porous materials. This thermal inertia is basically consistent with the value (282 +93/-35 tiu) by in situ measurement using a thermal radiometer MARA on MASCOT lander (Grott et al., 2019). Furthermore, in the close-up thermal images, there were found boulders colder by 20 &amp;#176;C or more, indicating the thermal inertia of typical carbonaceous chondrite meteorites.&lt;/p&gt; &lt;p&gt;Considering these results, we proposed a formation scenario of Ryugu: fluffy cosmic dusts gathered to form porous planetesimals, and then much larger sized but still porous bodies. A low degree of consolidation and alteration has occurred at most of the body, while a higher degree of consolidation or alteration proceeded at the deep interior. Huge meteoritic impacts destroyed and fragmented the bodies, and part of those fragments were re-accreted to form the next generation, rubble-pile bodies (asteroids). Boulders found on Ryugu might have originated from the deep interior of parent bodies, so that most of them are very porous and less consolidated but some of them are relatively dense materials similar to carbonaceous chondrites, which might have originated from the interior. Due to YORP effect, the rotation rate decreased to current one, and the current shape of a spinning top-shape were formed. Analysis of returned sample will make progress in our knowledge of the planetary formation process.&lt;/p&gt;
講演・口頭発表等
522所属学協会
5共同研究・競争的資金等の研究課題
6-
日本学術振興会 科学研究費助成事業 新学術領域研究(研究領域提案型) 2017年6月 - 2022年3月
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日本学術振興会 科学研究費助成事業 基盤研究(B) 2014年4月 - 2019年3月
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日本学術振興会 科学研究費助成事業 基盤研究(C) 2010年 - 2012年
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日本学術振興会 科学研究費助成事業 若手研究(A) 2005年 - 2007年
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日本学術振興会 科学研究費助成事業 基盤研究(C) 2002年 - 2003年
● 専任大学名
1-
専任大学名東京大学(University of Tokyo)
● 所属する所内委員会
1-
所内委員会名放射線安全委員会